News Archive for Wind Energy

Lateral Axis Wind Turbine Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2016 – 2024

Global Lateral Axis Wind Turbine Market: Overview

The global market for wind power is undoubtedly one of the most researched and dynamically developing areas of the renewable energy sector. Experiments with the blades of a wind turbine in terms of shape, size, spinning direction, material, and other aspects having a direct impact on the efficiency of a wind turbine are taking place at a rapid pace in the global market. The scope of the efficiency of wind turbines is being constantly extended and new technologies are gaining increased recognition from public and private funding bodies.

This report examines the future scope of development of the lateral axis wind turbine technology – the newest entrant in the highly dynamic field of wind turbines. The scope of growth in the market for lateral axis wind turbines, with the technology still in its conceptual state, will be determined by the way funds are received and the technology is refined in the near future.

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The report identifies the growth potential of this novel wind turbine technology, the scope of future development, demand and supply potential, and the key regions that can act as the much-needed breeding ground for this technology to reach the mainstream market. A detailed overview of the way alternative technologies will compete with the lateral axis wind turbine technology is also included in the report, allowing the reader a clear understanding of the attractiveness of this technology for the global wind energy market.

The present state of government and private funding and investment in novel technologies in the field of wind power along with an overview of the regions with the most encouraging investment policies are also examined in the report. A detailed section highlighting the prominent technology companies operating in the field of wind turbines, with details such as their recent strategies, alliances, product and services portfolio, financial standing, and the scope of investment in lateral axis wind turbines is included.

Global Lateral Axis Wind Turbine Market: Drivers and Restraints

The Ferris Wheel-like design of lateral axis wind turbines, with the turbine blades operating in an epicyclical path around the turbine’s central shaft, has many advantages as compared to the traditional vertical and horizontal axis designs. Lateral axis wind turbines can revolve with the direction of the wind, generate less sound, can be manufactured at low cost using locally available materials, and are safer for bats and birds. These turbines can generate up to 20 MW of electricity for commercial use.

However, the higher number of moving parts in this design as compared to the traditional ones is projected to increase the necessity for more maintenance, which would essentially translate into higher operational costs of the overall wind power project. That said, lateral axis wind turbines could be highly suitable for rural applications such as powering water pumps and other small farming operations.

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Global Lateral Axis Wind Turbine Market: Geographical Overview

The technology holds immense scope for growth in developed markets for wind power such as North America and Europe. Europe, especially, could emerge as one of the key takers of the technology owing to the vast funds being invested for the development of wind energy under several plans and regulations founded to increase the region’s utilization of renewable energy sources. The U.S. could also emerge a potentially high-growth region for the lateral axis wind turbine market owing to encouraging policies and vast funds invested by the U.S. Department of Energy (DoE) for the development of advanced technologies in the field of renewable energy.

The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.

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Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

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Global QYResearch: Wind Energy Technology Market 2016 United States, EU, Japan, China, India and Southeast Asia Market Size, Status and Forecast 2021

This report studies the Global Wind Energy Technology Market 2016, analyzes and researches the Wind Energy Technology development status and forecast in United States, EU, Japan, China, India and Southeast Asia. This report focuses on the top players in global market, like
GE Energy
Gamesa
Vestas
Suzlon
Siemens
Mitsubishi
Goldwind
Enercon
China Ming Yang
Senvion
Nordex

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Market segment by Regions/Countries, this report covers
United States
EU
Japan
China
India
Southeast Asia

Market segment by Application, Wind Energy Technology can be split into
Application 1
Application 2
Application 3

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Table of Contents

United States, EU, Japan, China, India and Southeast Asia Wind Energy Technology Market Size, Status and Forecast 2021
1 Industry Overview of Wind Energy Technology
1.1 Wind Energy Technology Market Overview
1.1.1 Wind Energy Technology Product Scope
1.1.2 Market Status and Outlook
1.2 Global Wind Energy Technology Market Size and Analysis by Regions
1.2.1 United States
1.2.2 EU
1.2.3 Japan
1.2.4 China
1.2.5 India
1.2.6 Southeast Asia
1.3 Wind Energy Technology Market by End Users/Application
1.3.1 Application 1
1.3.2 Application 2
1.3.3 Application 3

2 Global Wind Energy Technology Competition Analysis by Players
2.1 Wind Energy Technology Market Size (Value) by Players (2015-2016)
2.2 Competitive Status and Trend
2.2.1 Market Concentration Rate
2.2.2 Product/Service Differences
2.2.3 New Entrants
2.2.4 The Technology Trends in Future

3 Company (Top Players) Profiles
3.1 GE Energy
3.1.1 Company Profile
3.1.2 Main Business/Business Overview
3.1.3 Products, Services and Solutions
3.1.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.1.5 Recent Developments
3.2 Gamesa
3.2.1 Company Profile
3.2.2 Main Business/Business Overview
3.2.3 Products, Services and Solutions
3.2.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.2.5 Recent Developments
3.3 Vestas
3.3.1 Company Profile
3.3.2 Main Business/Business Overview
3.3.3 Products, Services and Solutions
3.3.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.3.5 Recent Developments
3.4 Suzlon
3.4.1 Company Profile
3.4.2 Main Business/Business Overview
3.4.3 Products, Services and Solutions
3.4.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.4.5 Recent Developments
3.5 Siemens
3.5.1 Company Profile
3.5.2 Main Business/Business Overview
3.5.3 Products, Services and Solutions
3.5.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.5.5 Recent Developments
3.6 Mitsubishi
3.6.1 Company Profile
3.6.2 Main Business/Business Overview
3.6.3 Products, Services and Solutions
3.6.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.6.5 Recent Developments
3.7 Goldwind
3.7.1 Company Profile
3.7.2 Main Business/Business Overview
3.7.3 Products, Services and Solutions
3.7.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.7.5 Recent Developments
3.8 Enercon
3.8.1 Company Profile
3.8.2 Main Business/Business Overview
3.8.3 Products, Services and Solutions
3.8.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.8.5 Recent Developments
3.9 China Ming Yang
3.9.1 Company Profile
3.9.2 Main Business/Business Overview
3.9.3 Products, Services and Solutions
3.9.4 Wind Energy Technology Revenue (Value) (2011-2016)
3.9.5 Recent Developments
3.10 Senvion
3.10.1 Company Profile
3.10.2 Main Business/Business Overview

3.10.4 Wind Energy Technology Revenue (Value) (2011-2016)

5 United States Wind Energy Technology Development Status and Outlook
5.1 United States Wind Energy Technology Market Size (2011-2016)
5.2 United States Wind Energy Technology Market Size and Market Share by Players (2015-2016)

6 EU Wind Energy Technology Development Status and Outlook
6.1 EU Wind Energy Technology Market Size (2011-2016)
6.2 EU Wind Energy Technology Market Size and Market Share by Players (2015-2016)

7 Japan Wind Energy Technology Development Status and Outlook
7.1 Japan Wind Energy Technology Market Size (2011-2016)
7.2 Japan Wind Energy Technology Market Size and Market Share by Players (2015-2016)

8 China Wind Energy Technology Development Status and Outlook
8.1 China Wind Energy Technology Market Size (2011-2016)
8.2 China Wind Energy Technology Market Size and Market Share by Players (2015-2016)

9 India Wind Energy Technology Development Status and Outlook
9.1 India Wind Energy Technology Market Size (2011-2016)
9.2 India Wind Energy Technology Market Size and Market Share by Players (2015-2016)

10 Southeast Asia Wind Energy Technology Development Status and Outlook
10.1 Southeast Asia Wind Energy Technology Market Size (2011-2016)
10.2 Southeast Asia Wind Energy Technology Market Size and Market Share by Players (2015-2016)

11 Market Forecast by Regions and Application (2016-2021)
11.1 Global Wind Energy Technology Market Size (Value) by Regions (2016-2021)
11.2 Global Wind Energy Technology Market Size (Value) by Application (2016-2021)
11.3 The Market Drivers in Future

12 Wind Energy Technology Market Dynamics
12.1 Wind Energy Technology Market Opportunities
12.2 Wind Energy Technology Challenge and Risk
12.2.1 Competition from Opponents
12.2.2 Downside Risks of Economy
12.3 Wind Energy Technology Market Constraints and Threat
12.3.1 Threat from Substitute
12.3.2 Government Policy
12.3.3 Technology Risks
12.4 Wind Energy Technology Market Driving Force
12.4.1 Growing Demand from Emerging Markets
12.4.2 Potential Application

13 Market Effect Factors Analysis
13.1 Technology Progress/Risk
13.1.1 Substitutes
13.1.2 Technology Progress in Related Industry
13.2 Consumer Needs Trend/Customer Preference
13.3 External Environmental Change
13.3.1 Economic Fluctuations
13.3.2 Other Risk Factors

14 Research Finding/Conclusion

15 Appendix

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Rising Demand from APAC to Propel Global Turbines Market

Turbines are a device used in power generation plants and consist of a rotor assembly fixed to a set of blades. Various fluids are focused upon the blades of a turbine in power plants. The motion of the fluids transfers energy to the rotors, which are attached to a generator. Owing to their ease of operation, turbines are now important in many energy generation mechanisms.

Rising Demand for Electricity Drives Global Turbines Market

The primary driver for the turbines market is the increasing need for electricity. The increase in the global demand for electricity is driven by the increase in the global population in recent decades. The high rate of urbanization and industrialization around the world has also boosted the global turbines market. Urban infrastructure and industrial setups require energy virtually constantly, which has indirectly led to the rising demand for turbines. The increasing utilization of wind energy generation has also given a strong boost to the global turbines market. Generation of energy from wind has minimal effect on the environment, making it an environmentally feasible source of alternative energy.

On the flip side of the coin, the environmental impact of the production of the turbines themselves is a more prominent factor affecting the global turbines market. Due to this, fabricating compounds that do not harm the environment and can be used in turbines has emerged as a promising research avenue in the global turbines industry.

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Steam Turbines Major Product Segment, Asia Pacific Major Regional Segment of Global Market

Steam turbines are the dominant category in the global turbines market. They have held this position for the last few decades and are likely to remain in the driving seat in the near future. Energy generation from several sources consists of the energy source being used to heat water. The steam coming from the boiling water operates the turbine. Thus, steam turbines are important in several energy generation mechanisms.

On the basis of geography, Asia Pacific held a 40% share in the global market for turbines in 2013. The dominant share of the region can be attributed to the initiation of numerous massive energy generation projects in dynamic economies such as China.

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Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Global Market For Solar Concentrated Photovoltaic Research Report 2016: Abegoa Solar Amonix Inc. Arima EcoEnergy Emcore Corp. Soitec SA …

This report studies Global Solar Concentrated Photovoltaic Market 2016, especially in North America, Europe, China, Japan, Southeast Asia and India, focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
Abegoa Solar
Amonix Inc.
Arima EcoEnergy
Emcore Corp.
Soitec SA

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Market Segment by Regions, this report splits Global into several key Regions, with production, consumption, revenue, market share and growth rate of Solar Concentrated Photovoltaic in these regions, from 2011 to 2021 (forecast), like
North America
Europe
China
Japan
Southeast Asia
India
Split by product type, with production, revenue, price, market share and growth rate of each type, can be divided into
Type I
Type II
Type III
Split by application, this report focuses on consumption, market share and growth rate of Solar Concentrated Photovoltaic in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

Global Solar Concentrated Photovoltaic Market Research Report 2016
1 Solar Concentrated Photovoltaic Market Overview
1.1 Product Overview and Scope of Solar Concentrated Photovoltaic
1.2 Solar Concentrated Photovoltaic Segment by Type
1.2.1 Global Production Market Share of Solar Concentrated Photovoltaic by Type in 2015
1.2.2 Type I
1.2.3 Type II
1.2.4 Type III
1.3 Solar Concentrated Photovoltaic Segment by Application
1.3.1 Solar Concentrated Photovoltaic Consumption Market Share by Application in 2015
1.3.2 Application 1
1.3.3 Application 2
1.3.4 Application 3
1.4 Solar Concentrated Photovoltaic Market by Region
1.4.1 North America Status and Prospect (2011-2021)
1.4.2 Europe Status and Prospect (2011-2021)
1.4.3 China Status and Prospect (2011-2021)
1.4.4 Japan Status and Prospect (2011-2021)
1.4.5 Southeast Asia Status and Prospect (2011-2021)
1.4.6 India Status and Prospect (2011-2021)
1.5 Global Market Size (Value) of Solar Concentrated Photovoltaic (2011-2021)

…..

7 Global Solar Concentrated Photovoltaic Manufacturers Profiles/Analysis
7.1 Abegoa Solar
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Solar Concentrated Photovoltaic Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Abegoa Solar Solar Concentrated Photovoltaic Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Amonix Inc.
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Solar Concentrated Photovoltaic Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Amonix Inc. Solar Concentrated Photovoltaic Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Arima EcoEnergy
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Solar Concentrated Photovoltaic Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Arima EcoEnergy Solar Concentrated Photovoltaic Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Emcore Corp.
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Solar Concentrated Photovoltaic Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Emcore Corp. Solar Concentrated Photovoltaic Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Soitec SA
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Solar Concentrated Photovoltaic Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Soitec SA Solar Concentrated Photovoltaic Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview

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Global Market For Concentrator Solar Cell Sales Report 2016 – Abengoa Solar Amonix Inc. Arima EcoEnergy Emcore Corp Soitec SA …

This report studies sales (consumption) of Global Concentrator Solar Cell Market 2016, especially in United States, China, Europe, Japan, focuses on top players in these regions/countries, with sales, price, revenue and market share for each player in these regions, covering
Abengoa Solar
Amonix Inc.
Arima EcoEnergy
Emcore Corp
Soitec SA

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Market Segment by Regions, this report splits Global into several key Regions, with sales (consumption), revenue, market share and growth rate of Concentrator Solar Cell in these regions, from 2011 to 2021 (forecast), like
United States
China
Europe
Japan
Split by product Types, with sales, revenue, price and gross margin, market share and growth rate of each type, can be divided into
Type I
Type II
Type III
Split by applications, this report focuses on sales, market share and growth rate of Concentrator Solar Cell in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

Global Concentrator Solar Cell Sales Market Report 2016
1 Concentrator Solar Cell Overview
1.1 Product Overview and Scope of Concentrator Solar Cell
1.2 Classification of Concentrator Solar Cell
1.2.1 Type I
1.2.2 Type II
1.2.3 Type III
1.3 Application of Concentrator Solar Cell
1.3.1 Application 1
1.3.2 Application 2
1.3.3 Application 3
1.4 Concentrator Solar Cell Market by Regions
1.4.1 United States Status and Prospect (2011-2021)
1.4.2 China Status and Prospect (2011-2021)
1.4.3 Europe Status and Prospect (2011-2021)
1.4.4 Japan Status and Prospect (2011-2021)
1.5 Global Market Size (Value and Volume) of Concentrator Solar Cell (2011-2021)
1.5.1 Global Concentrator Solar Cell Sales and Growth Rate (2011-2021)
1.5.2 Global Concentrator Solar Cell Revenue and Growth Rate (2011-2021)

…..

7 Global Concentrator Solar Cell Manufacturers Analysis
7.1 Abengoa Solar
7.1.1 Company Basic Information, Manufacturing Base and Competitors
7.1.2 Concentrator Solar Cell Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Abengoa Solar Concentrator Solar Cell Sales, Revenue, Price and Gross Margin (2011-2016)
7.1.4 Main Business/Business Overview
7.2 Amonix Inc.
7.2.1 Company Basic Information, Manufacturing Base and Competitors
7.2.2 103 Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Amonix Inc. Concentrator Solar Cell Sales, Revenue, Price and Gross Margin (2011-2016)
7.2.4 Main Business/Business Overview
7.3 Arima EcoEnergy
7.3.1 Company Basic Information, Manufacturing Base and Competitors
7.3.2 120 Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Arima EcoEnergy Concentrator Solar Cell Sales, Revenue, Price and Gross Margin (2011-2016)
7.3.4 Main Business/Business Overview
7.4 Emcore Corp
7.4.1 Company Basic Information, Manufacturing Base and Competitors
7.4.2 Nov Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Emcore Corp Concentrator Solar Cell Sales, Revenue, Price and Gross Margin (2011-2016)
7.4.4 Main Business/Business Overview
7.5 Soitec SA
7.5.1 Company Basic Information, Manufacturing Base and Competitors
7.5.2 Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Soitec SA Concentrator Solar Cell Sales, Revenue, Price and Gross Margin (2011-2016)
7.5.4 Main Business/Business Overview

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Global Vertical Axis Wind Turbine Market Heads towards Promising Future with Rising Demand for Wind Energy

Globally, the increasing focus on the installation of renewable energy systems has resulted in a wide range of vertical axis wind turbines being introduced in the market. Although the majority of wind turbines that are currently operational on a commercial scale are horizontal axis ones, with the advent of the latest technologies, vertical axis wind turbines are touted as an attractive alternative for the future.

Q: What are the types of axis wind turbines available in the commercial market?

A. Currently vertical axis wind turbines are available in three primary designs: Darrieus model, giromill model, and savonius model. Of these, the Darrieus wind turbine, also known as ‘eggbeater’ turbine, owing to its unique design, was invented by George Darrieus in 1931. It is a low torque, high speed machine, which has proven highly efficient for electricity generation. This type of vertical axis wind turbine usually requires a push from an external power source to start rotating. Darrieus wind turbines have two vertically oriented blades that revolve around a shaft.

A Savonious wind turbine on the other hand is a high torque and low rotating machine. Its design is a lot similar to an anemometer. Savonious wind turbines use lift produced by airfoil-shaped blades in order to drive a rotor. Thus the speed at which Savonius vertical wind turbines rotate is slower than the approaching wind.

Q: What are the factors propelling the global vertical axis wind turbine market?

A. Unlike a horizontal wind turbine, orientation mechanisms to generate electricity are not required in a vertical axis wind turbine. This helps in substantially reducing the cost incurred on manufacturing the turbine. Furthermore, the repair and maintenance of vertical axis wind turbines are relatively easier and more convenient since major power generating components such as generator and gearbox are located toward the base of the turbine.

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Besides this, vertical axis wind turbines claim to require lesser wind for generating an equivalent volume of energy, and can therefore be placed in lower altitudes where the velocity of wind is generally lower. The increasing awareness regarding the aforementioned benefits offered by vertical axis wind turbines is the primary factor fuelling demand from the market.

The market is also looking for numerous prospects of deploying vertical axis wind turbines in small-scale decentralized applications. These wind turbines are advocated as being capable of harnessing energy from wind blowing from all directions.

Q: How is the market gaining from the recent pilots and developments?

A: Iceland boasts exceptional potential of deriving power from wind energy. Renewable sources provide 100 percent of the electricity produced in the island nation. Despite being at the fore of generating power from renewable sources, the nation has been facing difficulties in harnessing wind power for use in residential applications. However with the launch of vertical axis wind turbines by Helix Wind, Iceland is looking to benefit from a promising design that may change the way in which the residential sector harnesses energy from the wind.

The Helix Wind Savonious 2.0 has the perfect design to be roof-mounted just 2 feet above the roof line or tower-mounted between 14 and 35 feet. Since the rotor of this vertical axis wind turbine spins in any wind direction, it is considered ideal for urban settings.

In another pilot, John Dabiri, a professor of bioengineering and aeronautical at Caltech, has revealed the possibility of reducing cost incurred on harnessing wind energy using vertical axis wind turbine models. A remote Alaskan village called Igiugig will be the first to demonstrate this new approach to boost wind power output.

With such R&D development activities underway, the future of the global vertical axis wind turbine market seems promising.

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Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

Contact

Transparency Market Research

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Albany, NY 12207

Tel: +1-518-618-1030

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Email: sales@transparencymarketresearch.com

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Global Onshore Wind Energy Market: Cost-effectiveness and Large-scale Production of Wind Energy Augur Well for Global Onshore Wind Energy Market, Reports TMR

The global onshore wind energy market has a fairly consolidated vendor landscape, with the top ten companies holding about 73.5% of the market in 2013. Among these, the top five players currently leading the market are Vestas Wind System A/S, Goldwind Science & Technology Co., Ltd., Siemens Wind Power, Enercon GmbH, and Suzlon Group.

Nevertheless, TMR forecasts the global onshore wind energy market to reach US$898 bn by the end of 2020, from a valuation of US$189.4 bn in 2014. The market is thus likely to exhibit a robust CAGR of 29.6% between 2014 and 2020. Regionally, Asia Pacific dominated the market with a share of 38.1% in 2014.

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For companies operating in China, the year 2013 has proven exceptionally good in terms of added capacity, which catapulted the China-based OEM companies to a better position in the global ranking. Goldwind for instance was able to capitalize on the country’s favorable environmental policies and reach to a higher installed capacity in 2013. However, a contraction in the western markets, primarily the US, pushed many turbine manufacturers down in the ranking list. Spurred by these factors, several industrial giants were compelled to cancel their expansion plans.

With Improved Cost-effectiveness, Onshore Wind Energy Market Emerging as Lucrative Business

In the last couple of years, the wind industry has improved its cost-effectiveness and has become a lucrative business. This, combined with the decreasing cost due to the large-scale production of wind equipment and the advent of innovative generator and turbine technologies will steer growth of the onshore wind energy market in the forthcoming years.

Meanwhile, as governments worldwide decide on aggressive renewable capacity addition targets for wind energy, the onshore wind energy market is likely to report simultaneous growth. Mandatory renewable energy targets are enforced on power utilities to enable governments purchase specific proportions of their energy sales from non-conventional sources within a specific time period. With nations increasing their wind energy targets, numerous organizations are prompted to accelerate their investment in the technology.

The aforementioned factors, compounded with low risk of technology failure, are boosting investors’ confidence on onshore wind energy.

Need for Sprawling Areas Creates Difficulties in Getting Construction Clearance, Thus Hinders Market’s Trajectory

“Low tolerance for noise and visual impact of wind turbines are inhibiting the market’s trajectory to an extent,” said a lead TMR analyst. Onshore wind energy firms are not built in a densely populated areas unlike other renewable energy plants. People living in close proximity of onshore wind firms often complain about noise pollution created by turbines. Furthermore, because of being spread across sprawling areas, developers often have to struggle with getting construction clearance compared to other renewable technologies such as biomass or solar energy. This poses significant challenge to the key players in the market.

Design Innovation Using Alternative Material Could Fuel Installation of Onshore Wind Energy Towers

As manufacturers explore alternative materials for producing vital components of wind technology, they are expected to improve efficiency of onshore wind turbines, besides ascertaining cost-effectiveness. If built using alternative materials, such as concrete, it could be possible to install towers more than 100-meter in height, enabling them take advantage of steadier and stronger wind, and finally boosting overall output.

The report segments the global onshore wind energy market as:

Global Onshore Wind Energy Market, By Geography:

  • North America
  • Asia Pacific
  • Europe
  • Middle East and Africa
  • South and Central America

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Global Wind Turbine Operations and Maintenance Market: Demand from Offshore Projects to Report Strong Growth, Says TMR

With the presence of a large pool of companies, such as GE Wind Turbine, Suzlon Group, Siemens Wind Power GmbH, Upwind Solutions Inc., and Guodian United Power Technology Co. Ltd., the global wind turbine operations and maintenance market demonstrates a fragmented and a highly competitive landscape, finds a study by Transparency Market Research (TMR).

Hitherto, a majority of players in this market were operating within a specified geography. However, in a bid to increase their visibility in the global market, many of them have begun to venture into other geographies via mergers, acquisitions, and strategic collaborations. This, as a result, is likely to intensify the competition within this market significantly in the forthcoming years.

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Supported by the increased investments by wind farm owners, the opportunity in the global market for wind turbine operation and maintenance is likely to expand at a CAGR of 8.80% during the period from 2015 to 2023, increasing from US$10.4 bn to US$20.6 by the end of the forecast period, states the research report. The demand for onshore wind turbine operation and maintenance services has been higher than offshore services. Although the scenario is expected to remain same, offshore wind turbine operations and maintenance services are projected to witness a significant surge over the next few years.

Increasing Investments in Renewable Energy Sector to Ensure Europe’s Dominance

The report also presents a study of the worldwide market for wind turbine operations and maintenance on the basis of geography. According to the study, the global market is spread across Asia Pacific, North America, Europe, and the Rest of the World. With a share of more than 40% in 2014, Europe has emerged as the leading contributor to this market and it is anticipated to remain so throughout the forecast period. This rise can be attributed to the increase in investments from Italy, Spain, Germany, and The U.K. in the European renewable energy sector, notes the study.

Asia Pacific has also been a prominent market for wind turbine operations and maintenance across the world. It held a share of nearly 37% in 2014. Thanks to the expanded role of financial investors as wind farm owners, analysts expect this regional market to witness a strong rise in the demand for wind turbine operations and maintenance services over the forecast period.

Increasing Number of Aging Wind Turbines to Boost Demand for Operations and Maintenance Services

Of late, a significant rise has been noticed in the average age of installed wind turbines across the world. “With wind turbines getting older, the need for their repair and maintenance has increased considerably in order to make them operate efficiently and maintain utilization factors. The need for operations and maintenance services, together with the demand for automated remote monitoring systems, has increased substantially due to the rising reports of equipment failure in aging wind turbines,” says an analyst at TMR.

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The increasing cases of generator assembly and gearbox failure are also expected to fuel the demand for wind turbine operations and maintenance services over the forthcoming years, reports the research study.

Rising Cost of Logistics to Limit Adoption of Wind Turbine Operations and Maintenance Service

Although the worldwide market for wind turbine operations and maintenance looks flourishing currently, the rise in the cost of logistics may limit the adoption of these services to some extent during the forecast period

Apart from this, the dearth of skilled workforce around the world is also projected to hamper the growth of this market considerably in the years to come, states the research report.

The study presented here is based on a report by Transparency Market Research (TMR) titled “Wind Turbine Operations and Maintenance Market  – Global Industry Analysis, Size, Share, Growth Trends and Forecast 2015–2023.”

The global wind turbine operation and maintenance market is segmented into:

By Application

Onshore
Offshore

By Region

North America
Europe
Asia Pacific
Rest of World (RoW)

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Global Offshore Wind Turbines Market: Growing Awareness Regarding Preservation of Natural Resources to Create Demand, says TMR

With more countries utilizing offshore wind potential, the global offshore wind turbines market is expected to grow at a significant pace, states a report by Transparency Market Research (TMR). The study is titled, “Offshore Wind Turbines Market – Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2015 – 2023.” The report covers key drivers, restraints, trends, and opportunities in the market. It discusses important segments and sub-segments of the global offshore wind turbines market and mentions the leading and declining segments. The report also assesses the competitive landscape of the market and includes recent developments by key players in the market, strategies adopted by them, and their business and financial overview.

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Offshore wind is now expected to become one of the largest renewable power market segments by 2023 and this is driving the offshore wind turbines market. It is expected that the UK, China, and Germany will contribute significantly towards the growth of the market, owing to the growing number of projects that are currently in the planning or building phases. As fossil fuels are depleting, it has become inadvertent for governments and industries to look for alternative sources of energy. This has spurred the adoption of offshore wind energy as energy source by many countries, thus aiding the growth of the market.

Another reason behind the shift from conventional fuels to offshore wind is the fact that conventional or fossil fuels have adverse effects on the environment and human health. Thus, government and environmental regulations are in favor of investing in renewable energy. This is another important factor driving the global offshore wind turbines market. Government support has thus enabled countries such as India, France, the U.S., Germany, and the U.K. to invest heavily on wind energy, subsequently boosting the demand for offshore wind turbines. In addition to this, an overall rise in the demand for electricity especially in developing nations of Asia Pacific will drive the market in the future. Rapid industrialization and infrastructure development spur the need for electricity and will in turn create a heightened demand for alternative source of energy.

The report segments the global offshore wind turbines market on the basis of foundation type into tripod piled, steel jacket, tripod suction caisson, monopole, floating wind turbines, and gravity base foundation. Some of the key players operating in the offshore wind turbines market are Gamesa, Vestas, Siemens AG, Goldwind Science & Technology Co., Ltd., Sinovel Wind Group Co.,Ltd, General Electric, Suzlon Group, and Nordex SE. The report includes key information regarding the mergers, collaborations, partnerships, and acquisitions among players.

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TMR’s data repository is continuously updated and revised by a team of research experts so that it always reflects the latest trends and information. With extensive research and analysis capabilities, Transparency Market Research employs rigorous primary and secondary research techniques to develop distinctive data sets and research material for business reports.

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Global QYResearch: Waste to Energy (WTE) Sales Market Report 2016 Market Study by Maximal Popularity, Emerging Authority, Sales, Countries, Companies, Profits & Forecasts

This report studies sales (consumption) of Waste to Energy (WTE) in Global market, especially in USA, China, Europe, Japan, India and Southeast Asia, focuses on top players in these regions/countries, with sales, price, revenue and market share for each player in these regions, covering
Abu Dahbi National Energy Company PJSC (TAQA)
Babcock & Wilcox V?lund A/S
China Everbright International Limited
CISC
Covanta Energy Corporation
Hitachi Zosen Inova AG
Hunan Yonker Environmental Protection Co. Ltd
Keppel Seghers
Mitsubishi Heavy Industries Environmental & Chemical Engineering Co. Ltd. (MHIEC)
New Energy Corporation
Sembcorp
Suez Environnement (SITA)
Viridor

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Market Segment by Regions, this report splits Global into several key Regions, with sales (consumption), revenue, market share and growth rate of Waste to Energy (WTE) in these regions, from 2011 to 2021 (forecast), like
USA
China
Europe
Japan
India
Southeast Asia
Split by product Types, with sales, revenue, price and gross margin, market share and growth rate of each type, can be divided into
Type I
Type II
Type III
Split by applications, this report focuses on sales, market share and growth rate of Waste to Energy (WTE) in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

Global Waste to Energy (WTE) Sales Market Report 2016
1 Waste to Energy (WTE) Overview
1.1 Product Overview and Scope of Waste to Energy (WTE)
1.2 Classification of Waste to Energy (WTE)
1.2.1 Type I
1.2.2 Type II
1.2.3 Type III
1.3 Application of Waste to Energy (WTE)
1.3.1 Application 1
1.3.2 Application 2
1.3.3 Application 3
1.4 Waste to Energy (WTE) Market by Regions
1.4.1 USA Status and Prospect (2011-2021)
1.4.2 China Status and Prospect (2011-2021)
1.4.3 Europe Status and Prospect (2011-2021)
1.4.4 Japan Status and Prospect (2011-2021)
1.4.5 India Status and Prospect (2011-2021)
1.4.6 Southeast Asia Status and Prospect (2011-2021)
1.5 Global Market Size (Value and Volume) of Waste to Energy (WTE) (2011-2021)
1.5.1 Global Waste to Energy (WTE) Sales and Growth Rate (2011-2021)
1.5.2 Global Waste to Energy (WTE) Revenue and Growth Rate (2011-2021)

9 Global Waste to Energy (WTE) Manufacturers Analysis
9.1 Abu Dahbi National Energy Company PJSC (TAQA)
9.1.1 Company Basic Information, Manufacturing Base and Competitors
9.1.2 Waste to Energy (WTE) Product Type, Application and Specification
9.1.2.1 Type I
9.1.2.2 Type II
9.1.3 Abu Dahbi National Energy Company PJSC (TAQA) Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.1.4 Main Business/Business Overview
9.2 Babcock & Wilcox V?lund A/S
9.2.1 Company Basic Information, Manufacturing Base and Competitors
9.2.2 128 Product Type, Application and Specification
9.2.2.1 Type I
9.2.2.2 Type II
9.2.3 Babcock & Wilcox V?lund A/S Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.2.4 Main Business/Business Overview
9.3 China Everbright International Limited
9.3.1 Company Basic Information, Manufacturing Base and Competitors
9.3.2 146 Product Type, Application and Specification
9.3.2.1 Type I
9.3.2.2 Type II
9.3.3 China Everbright International Limited Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.3.4 Main Business/Business Overview
9.4 CISC
9.4.1 Company Basic Information, Manufacturing Base and Competitors
9.4.2 Sept Product Type, Application and Specification
9.4.2.1 Type I
9.4.2.2 Type II
9.4.3 CISC Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.4.4 Main Business/Business Overview
9.5 Covanta Energy Corporation
9.5.1 Company Basic Information, Manufacturing Base and Competitors
9.5.2 Product Type, Application and Specification
9.5.2.1 Type I
9.5.2.2 Type II
9.5.3 Covanta Energy Corporation Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.5.4 Main Business/Business Overview
9.6 Hitachi Zosen Inova AG
9.6.1 Company Basic Information, Manufacturing Base and Competitors
9.6.2 Million USD Product Type, Application and Specification
9.6.2.1 Type I
9.6.2.2 Type II
9.6.3 Hitachi Zosen Inova AG Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.6.4 Main Business/Business Overview
9.7 Hunan Yonker Environmental Protection Co. Ltd
9.7.1 Company Basic Information, Manufacturing Base and Competitors
9.7.2 Energy Product Type, Application and Specification
9.7.2.1 Type I
9.7.2.2 Type II
9.7.3 Hunan Yonker Environmental Protection Co. Ltd Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.7.4 Main Business/Business Overview
9.8 Keppel Seghers
9.8.1 Company Basic Information, Manufacturing Base and Competitors
9.8.2 Product Type, Application and Specification
9.8.2.1 Type I
9.8.2.2 Type II
9.8.3 Keppel Seghers Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.8.4 Main Business/Business Overview
9.9 Mitsubishi Heavy Industries Environmental & Chemical Engineering Co. Ltd. (MHIEC)
9.9.1 Company Basic Information, Manufacturing Base and Competitors
9.9.2 Product Type, Application and Specification
9.9.2.1 Type I
9.9.2.2 Type II
9.9.3 Mitsubishi Heavy Industries Environmental & Chemical Engineering Co. Ltd. (MHIEC) Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.9.4 Main Business/Business Overview
9.10 New Energy Corporation
9.10.1 Company Basic Information, Manufacturing Base and Competitors
9.10.2 Product Type, Application and Specification
9.10.2.1 Type I
9.10.2.2 Type II
9.10.3 New Energy Corporation Waste to Energy (WTE) Sales, Revenue, Price and Gross Margin (2011-2016)
9.10.4 Main Business/Business Overview
9.11 Sembcorp
9.12 Suez Environnement (SITA)
9.13 Viridor

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Corrosion inhibitors market size to exceed USD 8.8 billion by 2023: Global Market Insights, Inc.

Global corrosion inhibitors market size was estimated at 5.12 million tons in 2015, as per the latest research report by Global Market Insights, Inc. Growing wastewater treatment chemicals demand for owing to rapid industrialization is expected key trend to drive market growth. Unregulated discharge of industrial and domestic contaminants has increased the need for water treatment.

Corrosion inhibitors market size is forecast to hit USD 8.8 billion in revenue, by 2023. EPA and REACH norms will play significant role in developing water treatment chemicals demand, thereby boosting product demand.

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The Safe Drinking Water Act and its amendments establish the basic framework for protecting the drinking water used by public water systems in the U.S. Organic corrosion inhibitor market generated over USD 4 billion in revenue in 2015.

                      MEA corrosion inhibitors market size, by end-use, (USD Million) 2012-2023

MEA corrosion inhibitors market size, by end-use, (USD Million) 2012-2023

Power generation industry dominated the demand with overall consumption close to 1.5 million tons in 2015. Rising energy requirements due to rapid industrialization in APAC & LATAM is forecast to drive demand.

Planned and unplanned plant shutdown can result in degradation of pumps, gas turbines and switch gears used in power generation industry, where humidity & condensation can be reasons for the cause.

Key raw materials chromium, oxygen atoms, phosphorous, zinc and nitrogen, have associated health hazards and are a matter of concern for inhibitor disposal. Associated environmental hazards through inappropriate disposal along with imbalance in raw material supply could impact cost.

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Increasing research focus to develop green corrosion inhibitors from natural sources like potato, onion, seeds and gelatin is underway, which may present growth opportunity for industry participants.

Key insights from the report include:

  • Global corrosion inhibitors market size is predicted to grow at 4.7% CAGR and reach 7.39 million tons by 2023.
  • Water based corrosion inhibitors market size was dominant and accounted for over 77% of the total 2015 demand. Solvent/oil based applications may witness sluggish growth rates with 4% CAGR from 2016 to 2023.
  • APAC, led by India and China corrosion inhibitors market size, was dominant regional industry and accounted for close to 38% of the total volume in 2015. FDI policies by governments of India and China are encouraging investors to set up metal and chemical processing plants in the region, which may boost demand.
  • APAC oil & gas industry may consume approximately 700 kilo tons by 2023, with expected significant gains at 6.4% up to 2023.
  • Europe metal processing industry based on the product demand was valued close to USD 180 million in 2015 and is forecast to grow at significant rate up to 2023.
  • Global corrosion inhibitors market share is fragmented, with GE, Ecolab, BASF and Ashland catering to below 50% of the total demand in 2015.
  • AkzoNobel, Lubrizol, Henkel, Cytec, Champion Technologies, Cortec, Daubert and Dai-Ichi are among notable companies competing in the market.

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Wind Energy Foundation Market – Rising Need for Clean Energy to Increase Global Demand for Wind Energy Foundation, Reports TMR

A new report by Transparency market Report (TMR) states that the significant increase in the need for clean energy has fueled the demand for wind energy foundations across the world. The report, titled “Wind Energy Foundation Market – Global Industry Analysis, Size, Share, Growth Trends, and Forecast 2016 – 2024,” offers a comprehensive analysis of this market, highlighting the key market trends and opportunities.

In this report, the worldwide market for wind energy foundation has been evaluated on the basis of location and the regional spread of this market. Based on location, the market has been classified into onshore projects and offshore projects. Offshore projects have been registering a higher demand for wind energy foundations compared to onshore projects. However, the high cost associated with the installation of these foundations is likely to limit their demand in offshore projects over the next few years. The maintenance of wind energy foundations in offshore locations is another serious challenge that this market may face in the coming years, notes the research study.

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Mono pile foundations, jacket pile foundations, gravity type foundations, tripod foundations, and suction caissons are the key type of wind energy foundations utilized in offshore projects. Among these, mono pile foundations witness a widespread application, specifically in Europe, due to the ongoing projects for the promotion of sustainable energy in this region.

Mono pile foundations, however, are not considered appropriate for large turbines, which are the latest trend in the worldwide wind energy industry. Apart from this, the transportation of these foundations is also quite challenging due to their weight. As a result, the demand for jacket pile foundations is registering a steady rise in the global market. As jacket pile foundations are light in weight, they are easy to transport and install, which is adding significantly to their popularity, reports the research study.

Geographically, the research report has segmented the worldwide market for wind energy foundations into Eastern Europe, Western Europe, Asia Pacific, Latin America, North America, and the Middle East and Africa.

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The competitive landscape of the global market for wind energy foundation has also been analyzed in this research report to determine the prevalent market hierarchy. The key market players mentioned in this study are Suzlon Group, Owec Tower AS, Ramboll Group, Offshore Wind Power Systems of Texas LLC, SWAY AS, Blue H Engineering BV, Marine Innovation & Technology, Principle Power Inc., Statoil, Bladt Industries A/S, DONG Energy Burbo Extension (UK) Ltd., TAG Energy Solutions, Fugro Renewable Services, MT Højgaard, and Dillinger Hütte.

Offshore Hydropower Market size is likely to grow at CAGR of over 3% from 2016 to 2023.

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Offshore hydropower market size is anticipated to witness significant growth over the forecast period. Hydropower market size was estimated to account for more than 16% of the overall power production in 2015 and is likely to grow at CAGR of over 3% from 2016 to 2023.

Clean energy offered by these systems accompanied by ability to handle base load demand is anticipated to drive offshore hydropower market growth. Non intermittent flow of electricity offered by production plants is likely to surge the industry demand from 2016 to 2023. In addition, it also allows plant operators to have excellent control over the energy production. Rising awareness regarding conventional energy might positively impact the industry growth. Furthermore, increasing carbon footprint is likely to boost offshore hydropower market size over the forecast period.

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Hydropower plants can be categorized on the basis of production capacity such as small, large, Pico-hydro as well as micro plants. Plants with more than 30 MW of production capacity are called large plants. Small production plants are the ones having production capacity ranging between 100 KW to 30 MW. Energy generation plants having production capacity less than 100 KW fall under Pico and micro power plants.

Large systems are further segmented into diversion plants, pumped storage plant and impoundment plants. Impoundment plants are expected to be the most commonly used ones. In addition, it involves construction of dam. Pumped storage are the plants used mainly during peak power demands and also involves construction of reservoir. Diversion plants are also known as run-of-river hydro.

Furthermore, it does not require any extra construction such as a dam or reservoir. It is anticipated to be the most favored technology for power generation. The large production systems are anticipated to pose derogatory impact on wild life and on environment during flood situations if not constructed properly, might negatively impact the industry growth. Large number of permits required for construction is likely to hider the industry demand. In addition, high financial requirement for installation of these systems might pose as challenge to the industry growth over the several upcoming years. Pumped-storage hydropower plants likely to increase in significance owing to energy storage advantages. Micro and small hydro systems are anticipated to witness highest growth owing to high facilities furnished by the setup. Proliferating demand for decentralized electricity production globally might drive the industry growth over the several upcoming years.

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Global Market Insights, Inc., headquartered in Delaware, U.S., is a global market research and consulting service provider; offering syndicated and custom research reports along with growth consulting services. Our business intelligence and industry research reports offer clients with penetrative insights and actionable market data specially designed and presented to aid strategic decision making. These exhaustive reports are designed via a proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy and biotechnology.

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Source: Global Market Insights, Inc.

Smart Water Metering Market Size Analysis Report, 2024

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Smart Water Metering Market size is projected to expand at an exponential rate owing to increase in construction spending in both residential and commercial.

Smart water metering is internet capable measuring device used for water, energy and natural gas utilization for commercial and residential areas. These systems comprise of an electric meter, control unit, and water meter in one particular package. Traditional meters measure only water consumption whereas smart water meters record total resource consumption for daily use, including waste water used in industries and many others applications. Mart meters gather and use information with the help of information and communications technology (ICT) and by real time data generation. The reason behind installation of smart meters is to manage efficiency and increase operations in commercial areas, industrial zone, and residential area to reduce overall expenditures and carbon foot print.

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The support system of this advanced metering infrastructure (AMI) technology provides constant two ways data bond between utilities, consumers meters and technologies used to deliver the communication. Power line communication (PLC), broadband, telephony, optical fiber cable, cellular transmissions, and wireless radio frequency are generally used to operate the water meters. Introduced communication patterns will design and construct consumption pattern, and accurate billings at various area levels, to update other functional software’s such as geographic information systems (GIS), supervisory control and data acquisition (SCADA), followed by the departments includes customer services, reservoir, and pumping stations. Smart water meters also monitors current water consumption, by contributing data towards hydraulic modeling to predict changes and outcome in water distribution.
Smart water metering market introduces new approach for groundwater management with different parameters such as billing, control, data processing/collection, and measurement.  As estimated one third of the total costs is associated with treatment of water, therefor minimum water wastage will result into decrease in overall cost and energy. Engagement of smart water metering will help to identify performance problem, managing operating cost and challenges, which will help to improve and prioritize customer services infrastructure spending.

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These meters also help to detect water loss both in customer end point and distribution networks, which helps to maximize the savings. The ability to prevent and detect leakages which is main sources of water loss can be prevented by strategic data generated by AMI, which may positively impact on smart water metering market size growth during the forecast period. Growing construction spending in both residential and commercial area will increase demand and drive the smart water metering market during the forecast period.

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Floating Solar Panels Market Size | Industry Report, 2024

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Floating Solar Panels Market size is estimated to expand over 50% CAGR. Scarcity of land, increasing demand for clean fuel and stringent government policies will drive the global floating solar panels market.

These ‘Floatovoltaics” employ water surface for panel installation and can be used upon reservoirs, ponds, lake and other stationary water sources. Panels are adjusted according to the position of sun which helps to enhance the efficiency and maximize the output.

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They also help to decrease algae growth in stable water and aid in reducing water evaporation through water bodies. As floating solar panels are placed above water it helps by its cooling effect and to maintain steady temperature of silicon panels, to continue output level. As temperature is less it helps in increasing work competence of photovoltaic cells in solar floating solar panel.

PV panels are well designed in curved mirrored film which concentrate sunlight on thin line, which requires less amount of silicon and which reduces panel size, thus decreasing in cost is evaluated in solar panels. Production cost of floating solar panels is usually less, due to less amount of steel utilization and in manufacturing of panels which have comparably reduced conventional panels cost. These floating solar panels can be mount in industrial water basins for water treatment, and above industrial ponds floating solar panels are also fixed, to provide electricity to water treatment plant of the pond.

Stringent governmental policies on carbon footprints, no land requirement for installation of floating solar panels, significant reduction in solar panel price and increasing demand for clean fuel energy is anticipated to drive the floating solar panels market during the forecast period.  Incentives such as subsidies and tax benefits along rent benefits to reservoir owners to further compliment the floating solar panels market growth. Floating solar panels are major and easy practised on dam reservoir for hydroelectric power generation due to transportation development and electricity generation.

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High installation and maintenance cost will holds back floating solar market growth in forecast period. These panels cannot be placed in sea seeing that the waves would stop them from maintaining angular position with wind and sun which will have an effect on electricity generation. Global floating solar panels market size has been broadly segmented on products (solar tracking panels and stationary floating panels), applications (offshore and onshore) for key regional markets.

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Global Market Insights, Inc., headquartered in Delaware, U.S., is a global market research and consulting service provider; offering syndicated and custom research reports along with growth consulting services. Our business intelligence and industry research reports offer clients with penetrative insights and actionable market data specially designed and presented to aid strategic decision making. These exhaustive reports are designed via a proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy and biotechnology.

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Analysts Forecast Continued Growth in Coil Tubing Market

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Coil Tubing Market size was over USD 3 Billion. Increasing shale gas exploration and production activities would drive the market during the forecast period.

North America, led by the U.S. coil tubing market size was dominant regional industry in 2015 owing to high exploration and production activity of shale gas. Middle East and Africa should witness a substantial growth in future owing to increasing demand for innovative technology in oil and gas application. The development of new oil and gas fields such as Sub-Sahara Africa will also drive Middle East and Africa coil tubing market.

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Also known as flexible tubing, it has a long metallic pipe, normally 25 to 83 mm in diameter wound on spool is mainly used in upstream activities. It is used to perform drilling, milling operations, logging and perforating, well intervention operation, circulation, fracturing process, removal of wax, hydrate plug and hydrocarbon, fishing, gas lifting, stimulation and enhance oil recovery processes such as acid fracturing and hydraulic etc. It helps to reduce exploration cost, transportation cost, tabular trip time, reservoir damage and ensure operation safety. These tubing are preferred over conventional straight tubing as it can be inserted into well during production and it is cost effective and used on high pressure wells.

Coil tubing unit includes injector head, drum, guider, blowout prevention system, control system and power system. Injector head is the main component and used to lift coil tubing during operation. The guider is used to inject and eject out of injector head. Drum is used to decide transport dimension and winding capacity of the unit. Power system is used to provide power to the unit. Blowout prevention system is used to sealing pressure in well to prevent blowout.

Increasing shale gas exploration and production activities across the globe will drive the coil tubing market share during the forecast period. Investment in oil and gas projects, discovery of new oil and gas reserves, redevelopment of matured oil and gas fields, shift to horizontallateral drilling, gradually increasing demand of oil and gas are some of the drivers which will boost the demand of coil tubing in the near future. Lack of skilled labor, low crude oil prices and competitive prices of alternative equipment such as snubbing units and workover rig acts as a restraint for industry. Increasing offshore drilling activities will be an opportunity for coil tubing market.

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U.S. solar panel market size is expected to witness significant growth from 2016 to 2023.

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Regional solar PV capacity was close to 24.1 GW by 2015. The spur in the region can be subjected to continuous realization of utility sector double-digit GW project pipeline accompanied by booming residential photovoltaic market. As of 2015, the U.S. is anticipated to add up more than 1 GWDC of panel installation. In addition, more than 30% of the electricity generated came for the solar panel implementations. California is expected to be a leading local region for U.S. solar panel market size.

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Residential sector is anticipated to exhibit highest growth rates & experience less industry fluctuations and is likely to install more than 2 GW of solar installation over the upcoming years. Residential markets such as Hawaii, California, Massachusetts and Arizona are expected to exhibit high growth potential over the forecast period. U.S. solar panel market price is expected to reduce in line with capacity expansion over the forecast period.

It is estimated that more than 50% of the U.S. states posses over 50 MWDC of solar PV installed by 2015. The region is also anticipated to upgrade its solar panel installations over the several forth coming years. Developers in the industry are expected o have sharp focus on project build out to make most from the 30% federal investment tax credit offer on installation of these systems.

The non residential segment is anticipated to struggle owing to declining state incentive funding. This tax redemption is expected to fall at 10% for third-party-owned residential PV, utility and commercial application and 0% for directly owned residential PV sectors over the forecast period. U.S. utility solar PV market is estimated to grow at a CAGR of over 9% from 2016 to 2023 and is expected to boost more than 50% of the solar installations over the several upcoming years. As of 2014, more than 3.5 GW utility-scale solar energy projects were expected to start is operations online.

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In addition, 14 GW of solar projects were estimated to be operating under contract. Commercial sector first installed 1 Giga Watt of PV system in 2011 and also 1 GW in 2014. This sector is anticipated to exhibit considerable growth over the forecast period. The U.S. solar panel industry is expected to grow by more than 30% in 2015 and utility is anticipated to account for more than 50% of estimated 8.1 Giga Watt in 2015. The region installed more than 6,200 MW of solar PV in 2014 that depicts a straight 30% hike in the implementation of these panels compared to 2013 statistics. California was valued for more than 8.5 GW of solar installations in 2014. Furthermore, 20 states accumulated 100 MW mark for aggregate operating solar PV installations. Proliferating installation of these systems in schools, government accompanied by nonprofit installations might positively impact U.S. solar panel market trend.

Furthermore, rising electricity prices accompanied by descending solar prices is expected to fuel the industry growth. Solar installations offer better cost savings, short payback period and offer higher returns on investment. In addition, these panels are anticipated to mark is significance owing to continuous hike in electricity prices. The advent of clean power plan (CPP) is likely to boost the industry. It is expected to contribute colossal growth potential for solar panel installation expansion in the region over the several forthcoming years.

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Offshore wind energy market size is anticipated to exceed USD 130 billion by 2023.

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Rising number of wind farms is expected to drive the market growth over the forecast period.

Europe offshore wind energy market is expected to dominate the global industry. The surge in the region can be attributed to increasing government policies. The European Union is expected to have set the electricity generation targets such as 35% from the renewable and 12% from wind sources. The region is anticipated to install 40 GW of wing energy generation system over forth coming years. As of 2013, the region was estimated to produce 5 GW of this energy. In addition, the industry is likely to add up 4.5 GW of production units annually over the next seven years.

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Asia pacific offshore wind energy market size is anticipated to witness significant growth from 2016 to 2023. The region is expected to add up 1.5 GW of additional capacities annually and is estimated to be valued over USD 5 billion by 2023. Major region involved for the setup include China, Japan, Taiwan and South Korea. Industry development is also expected to drive offshore wind turbine market size.

Rising investments accompanied by technological innovations are expected to escalate cost competitiveness along with construction activities. This in turn is likely to drive industry growth over the forecast period. Flourishing construction of turbines is projected to move farms away from shore in order to resolve limited space issues near coastlines as well as to deal with constrictive environmental laws. The projects away from cost are likely to encourage high efficient turbine manufacturing and also facilities in building bigger energy farms. This in turn might lead to turbines getting bigger as well as more powerful which is ultimately expected to fuel the project output capacity.

Bigger turbines are anticipated to be more efficient in operation. The capital expenditure involved in construction is likely to drop down by 6% over the forecast period. In addition, maintenance as well as operational costs is anticipated to descend by 14%. However capacity factor is expected to increase by 12% over the several upcoming years.

Proliferating installation of turbines is anticipated to increase the need for sighting new offshore wind sights in ever-deeper water areas. This in turn is likely to raise logistical issues for turbine installation and might hamper the industry growth. Further, new water vessels are being designed in order to set up offshore turbine systems effectively and efficiently.

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Advent of new technology is expected to modify the turbine foundation design from monopole construction or gravity-based to floating foundations or jacket-style ones. This in turn is likely to benefit in dealing with increasing needs of reducing installation time as well as high costs involved in project construction. Apart from the challenges involved, the construction of offshore energy production setup is likely to furnish massive growth potential over the several upcoming years.

 

Grid connected PV systems market size is expected to exhibit substantial growth from 2016 to 2023.

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PV systems combined with several types of storage systems such as battery energy and direct load control would offer achieve cost effective operation of the electric utility systems while boosting reliability with further energy sources. Over 40 countries globally are likely to install more than 100 MW of new solar PV capacity in 2015, signaling the true entry of solar into traditional energy generation.

In 2015, grid connected photovoltaic systems market installation accounted for over 300 MW in utility scale sector and is likely to be the leading application sector over the forecast period. The systems installed in residential sector were around 200 MW and commercial sector for over 240 MW in the same year. The advancement to generate significant power from renewable sources would offer massive environmental and economic benefits over the forecast period. The systems are mainly deployed in inverters to offer power solutions. The systems are ideally deployed in a small solar energy system for a single-family house or combined solution for an industrial complex. The systems are user friendly and offer high performance with the lowest cost expenditure.

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Apart from additional energy storage, rising interest in coupling storage with the utility scale solar PV market in order to enable the integration into a grid is estimated to drive grid connected solar photovoltaics market growth. Areas with high levels of renewable penetration and island grids are likely to hamper the output of large PV systems. This in turn is anticipated to pose as challenge to grid’s steadiness. Region such as Hawaii and Puerto Rico are now implementing ramp rate restrictions in order to establish maximum as well as minimum rate.

The global industry is segmented on the basis of application which include residential (more than 6 kW), commercial (5 MW to 6 kW) and utility scale (less than 5 MW). Key regional industries include Latin America, Europe, Asia Pacific and North America and MEA grid connected PV systems market.

The U.S. grid connected PV systems market is anticipated to witness significant demand growth. The region is expected to attain over 48% of the industry share by 2023 and continue its dominance over the forecast period. This can be attributed to pay for performance rates for ESS that offers frequency regulation services and also by neglecting charges in commercial electricity tariffs during peak time. In addition, increasing need for flexible capacity as a result of growing levels of renewable penetration and legislation such as Assembly Bill 2414 ESS Procurement Targets are also expected to drive the industry demand over the coming few years. Furthermore, Australia and UK are also predicted to deploy in residential energy storage in more noteworthy volumes over the forecast period.

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Wind energy storage devices market gains from rising demand for renewable sources of energy, investment opportunities 2020

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Wind energy storage devices, as the name suggests, are used to store energy harnessed from wind. Renewable energy sources such as solar and wind have considerable potential of reducing dependence on non-renewable energy sources such as fossil fuel. Concerns pertaining to climate change, favourable initiatives adopted by government (such as renewable portfolio standards), and consumer efforts, have resulted in the increasing dependence on wind energy for generating power. However, the wind energy has variable and uncertain output, unlike the conventional sources of electricity generation used around the world. Because wind doesn’t always blow, there has been a pressing need for deploying proper energy storage facilities, which translates into high demand for wind energy storage devices.

According to the report, the global wind energy storage devices market will exhibit a CAGR of 25.4% by 2018. The primary factor driving the wind energy storage devices is the deficit between demand and supply of wind energy, which can be mitigated using stored wind energy. Apart from this, the market is also gaining from the dwindling market for fossil fuels, which has made petroleum prices highly volatile and increased the need for clean energy sources to curb the rising carbon footprint.

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Wind energy storage devices are designed to store wind energy generated at peak times and utilize the same later during the time of high demand. Wind power provides a variable source of energy and the setup of these storages devices is based on actual energy generated at a particular plant. However, for these storage devices to perform efficiently, certain geographical requirements are imperative. Thus, it is very important for the potential installation locations to meet certain criteria. This concentrates the demand for wind energy storage devices only in locations that meet these criteria.

Nevertheless, the report forecasts impressive growth prospects for the wind energy storage devices market, since storage is as important as generating energy from renewable sources. With the increasing investment by governments in the wind energy market, energy storage will play a pivotal role in making available clean energy for industrial, commercial, or domestic uses.

The report provides a detailed analysis of the various factors contributing to the growth of this market. To study the prevailing competitiveness in the market, the report profiles companies such as Dresser-Rand, Extreme Power, Duke Power, Beacon Power, and Ballard Power.

A recent analysis by Transparency Market Research, titled “Wind Energy Storage Devices Market – Global Industry Size, Share, Trends, Analysis, and Forecast 2020 provides an in-depth analysis of the global market for wind energy storage devices. Compiled with the intent of updating industry stakeholders about the prevailing market dynamics, the report also presents refined forecasts for the market.

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Transparency Market Research (TMR) is a market intelligence company driven by high-pedigree consultants and researchers. TMR leverages its Syndicated Research, Custom Research, and Market Consulting expertise to help businesses make accurate decisions. TMR’s exclusive blend of quantitative forecasting and trends analysis draws on proprietary data sources and techniques, while their data repository is continuously updated to reflect the latest trends.

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