Global Floating Wind Turbine Market Size Analysis by Foundation (Spar-buoy, Semi-submersible, Others), by Depth (Shallow Water (less than 60 m Depth) , Deep Water (higher than 60 m Depth)) and Regional Forecasts 2020-2027

     
The global Floating Wind Turbine market is one of the quickest growing markets across the world. This research report contains in-depth information on all the industry statistics and facts & figures related to the Floating Wind Turbine market. The business strategies of all the leading business players, sales volume data, growth opportunities and other important data have been covered in through detail. This report also provides SWOT analysis, PEST Analysis, risk analysis, growth analysis, investment analysis and regional analysis. Siemens Gamesa Renewable, Mhi Vestas Offshore Wind, Senvion Sa, Abb Group, General Electric Company and more - all the leading players operating in the global Floating Wind Turbine market have been profiled in this research report. With the help of this research report, you will get important information on the upcoming industry challenges, emerging opportunities, business investments and recent developments in the Floating Wind Turbine market. You will also have access to the most important facts & figures that you can utilize for your investment purpose. You also get PEST analysis, SWOT analysis, and Porter’s Five Forces analysis. You get a detailed and complete report on the global Floating Wind Turbine market. Global Floating Wind Turbine Market is valued approximately at USD 3.2 billion in 2019 and is anticipated to grow with a healthy growth rate of more than 32.5% over the forecast period 2020-2027. Floating wind turbine is a type of offshore wind turbine, that is backed by a floating foundation where most of the mass is underwater. These turbines can be effective anywhere in deep water where depth is over 60 meters. In addition, due to dependable wind flow at seashore, floating wind turbine can produce electricity at stable rate unlike onshore wind turbine. Further, floating wind turbine is a cost-effective solution and minimizes carbon emission contrasting traditional power sources. Also, the floating wind turbine technology helps in removing the constraint of water depth that helps in selection of site at power generation. Thus, energy companies are investing a substantial amount of funds on the deployment of floating wind turbines. For instance, in June 2017, Statoil, a Norwegian energy company invested USD 268 million for its Hywind turbine project. The project involved installation of floating wind turbines at 78-meter sea depth in north-east coast of Scotland. Therefore, this initiative may significantly increase the demand for floating wind turbines in the market worldwide. Moreover, the paradigm shifts towards the renewable energy generation, along with the exponential investment for sustainable energy development are the few factors responsible for the impressive CAGR of the market during the forecast period. According to the data published by Wind Europe Organization in 2019, the new wind installations in Europe were 15.4 gigawatts (GW), up from 27% since 2018. Also, as per the IRENA, the wind energy generation capacity of India is the fifth largest around the world with almost 10,925MW in 2009 that increased to 35,288 MW in 2018, which is further accelerating the growth potential of floating wind turbine market. However, the high initial investment for the development of floating wind turbine is one of the prime factors restraining the market growth over the forecast period of 2020-2027. The regional analysis of the global floating wind turbine market is considered for the key regions such as Asia Pacific, North America, Europe, Latin America, and Rest of the World. Europe is the leading/significant region across the world in terms of market share owing to the rising government support to implement floating wind turbine, along with the significant presence of market vendors in the region. Whereas Asia-Pacific is anticipated to exhibit the highest growth rate / CAGR over the forecast period 2020-2027. Factors such as the growing wind energy generation capacity coupled with rise in investment on sustainable energy projects in the developing nations, such as China and India, are the few factors creating a lucrative opportunity for the growth of the floating wind turbine market in the Asia-Pacific region. Major market player included in this report are: Siemens Gamesa Renewable MHI Vestas Offshore Wind Senvion SA ABB Group General Electric Company Nordex SE Goldwind Envision Energy Mingyang Smart Energy Group Co., Ltd. Hitachi Corp. The objective of the study is to define market sizes of different segments & countries in recent years and to forecast the values to the coming eight years. The report is designed to incorporate both qualitative and quantitative aspects of the industry within each of the regions and countries involved in the study. Furthermore, the report also caters the detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market. Additionally, the report shall also incorporate available opportunities in micro markets for stakeholders to invest along with the detailed analysis of competitive landscape and product offerings of key players. The detailed segments and sub-segment of the market are explained below: By Foundation: Spar-buoy Semi-submersible Others By Depth: Shallow Water (less than 60 m Depth) Deep Water (higher than 60 m Depth) By Region: North America U.S. Canada Europe UK Germany France Spain Italy ROE Asia Pacific China India Japan Australia South Korea RoAPAC Latin America Brazil Mexico Rest of the World Furthermore, years considered for the study are as follows: Historical year – 2017, 2018 Base year – 2019 Forecast period – 2020 to 2027 Target Audience of the Global Floating Wind Turbine Market in Market Study: Key Consulting Companies & Advisors Large, medium-sized, and small enterprises Venture capitalists Value-Added Resellers (VARs) Third-party knowledge providers Investment bankers Investors Market Research Port provides research reports that are competitively priced for you. So, Get in touch with us today for the latest report on the Floating Wind Turbine market.
Chapter 1.Executive Summary 1.1.Market Snapshot 1.2.Global & Segmental Market Estimates & Forecasts, 2018-2027 (USD Billion) 1.2.1.Floating Wind Turbine Market, by Region, 2018-2027 (USD Billion) 1.2.2.Floating Wind Turbine Market, by Foundation, 2018-2027 (USD Billion) 1.2.3.Floating Wind Turbine Market, by Depth, 2018-2027 (USD Billion) 1.3.Key Trends 1.4.Estimation Methodology 1.5.Research Assumption Chapter 2.Global Floating Wind Turbine Market Definition and Scope 2.1.Objective of the Study 2.2.Market Definition & Scope 2.2.1.Scope of the Study 2.2.2.Industry Evolution 2.3.Years Considered for the Study 2.4.Currency Conversion Rates Chapter 3.Global Floating Wind Turbine Market Dynamics 3.1.Floating Wind Turbine Market Impact Analysis (2018-2027) 3.1.1.Market Drivers 3.1.2.Market Challenges 3.1.3.Market Opportunities Chapter 4.Global Floating Wind Turbine Market Industry Analysis 4.1.Porter’s 5 Force Model 4.1.1.Bargaining Power of Suppliers 4.1.2.Bargaining Power of Buyers 4.1.3.Threat of New Entrants 4.1.4.Threat of Substitutes 4.1.5.Competitive Rivalry 4.1.6.Futuristic Approach to Porter’s 5 Force Model (2017-2027) 4.2.PEST Analysis 4.2.1.Political 4.2.2.Economical 4.2.3.Social 4.2.4.Technological 4.3.Investment Adoption Model 4.4.Analyst Recommendation & Conclusion Chapter 5.Global Floating Wind Turbine Market, by Foundation 5.1.Market Snapshot 5.2.Global Floating Wind Turbine Market by Foundation, Performance - Potential Analysis 5.3.Global Floating Wind Turbine Market Estimates & Forecasts by Foundation 2017-2027 (USD Billion) 5.4.Floating Wind Turbine Market, Sub Segment Analysis 5.4.1.Spar-buoy 5.4.2.Semi-submersible 5.4.3.Others Chapter 6.Global Floating Wind Turbine Market, by Depth 6.1.Market Snapshot 6.2.Global Floating Wind Turbine Market by Depth, Performance - Potential Analysis 6.3.Global Floating Wind Turbine Market Estimates & Forecasts by Depth 2017-2027 (USD Billion) 6.4.Floating Wind Turbine Market, Sub Segment Analysis 6.4.1.Shallow Water (less than 60 m Depth) 6.4.2.Deep Water (higher than 60 m Depth) Chapter 7.Global Floating Wind Turbine Market, Regional Analysis 7.1.Floating Wind Turbine Market, Regional Market Snapshot 7.2.North America Floating Wind Turbine Market 7.2.1.U.S. Floating Wind Turbine Market 7.2.1.1.Foundation breakdown estimates & forecasts, 2017-2027 7.2.1.2.Depth breakdown estimates & forecasts, 2017-2027 7.2.2.Canada Floating Wind Turbine Market 7.3.Europe Floating Wind Turbine Market Snapshot 7.3.1.U.K. Floating Wind Turbine Market 7.3.2.Germany Floating Wind Turbine Market 7.3.3.France Floating Wind Turbine Market 7.3.4.Spain Floating Wind Turbine Market 7.3.5.Italy Floating Wind Turbine Market 7.3.6.Rest of Europe Floating Wind Turbine Market 7.4.Asia-Pacific Floating Wind Turbine Market Snapshot 7.4.1.China Floating Wind Turbine Market 7.4.2.India Floating Wind Turbine Market 7.4.3.Japan Floating Wind Turbine Market 7.4.4.Australia Floating Wind Turbine Market 7.4.5.South Korea Floating Wind Turbine Market 7.4.6.Rest of Asia Pacific Floating Wind Turbine Market 7.5.Latin America Floating Wind Turbine Market Snapshot 7.5.1.Brazil Floating Wind Turbine Market 7.5.2.Mexico Floating Wind Turbine Market 7.6.Rest of The World Floating Wind Turbine Market Chapter 8.Competitive Intelligence 8.1.Top Market Strategies 8.2.Company Profiles 8.2.1.Siemens Gamesa Renewable 8.2.1.1.Key Information 8.2.1.2.Overview 8.2.1.3.Financial (Subject to Data Availability) 8.2.1.4.Product Summary 8.2.1.5.Recent Developments 8.2.2.MHI Vestas Offshore Wind 8.2.3.Senvion SA 8.2.4.ABB Group 8.2.5.General Electric Company 8.2.6.Nordex SE 8.2.7.Goldwind 8.2.8.Envision Energy 8.2.9.Mingyang Smart Energy Group Co., Ltd. 8.2.10.Hitachi Corp. Chapter 9.Research Process 9.1.Research Process 9.1.1.Data Mining 9.1.2.Analysis 9.1.3.Market Estimation 9.1.4.Validation 9.1.5.Publishing 9.2.Research Attributes 9.3.Research Assumption

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