Picture
SEARCH
What are you looking for?
Need help finding what you are looking for? Contact Us
Compare

PUBLISHER: Market Xcel - Markets and Data | PRODUCT CODE: 1619509

Cover Image

PUBLISHER: Market Xcel - Markets and Data | PRODUCT CODE: 1619509

Wind Turbine Rotor Blade Market Assessment, By Material Type, By Size, By Application, By Region, Opportunities and Forecast, 2018-2032F

PUBLISHED:
PAGES: 225 Pages
DELIVERY TIME: 3-5 business days
SELECT AN OPTION
PDF & Excel Printable (Single User License)
USD 4500
PDF & Excel Printable (Corporate License)
USD 5700
PDF & Excel Printable (Custom Research License)
USD 8200

Add to Cart

Global wind turbine rotor blade market is projected to witness a CAGR of 7.02% during the forecast period 2025-2032, growing from USD 22.19 billion in 2024 to USD 38.18 billion in 2032. The market has experienced significant growth in recent years and is expected to maintain a strong pace of expansion in the coming years.

Wind turbine rotor blades are essential for capturing and converting wind energy into electricity. The blades transform the kinetic energy achieved from wind into mechanical energy, and the generator transforms the mechanical energy into electrical energy. Among the advantages of wind turbine rotor blades are the generation of renewable energy, coupled with a reduction in greenhouse gas emissions, thus serving as an alternative to fossil fuels.

Europe is regarded as one of the leading regions, especially due to the presence of countries like Germany and the United Kingdom. These countries have invested significantly in developing a strong renewable infrastructure influenced by government policymaking and sustainable practices. The region also boasts highly skilled engineers and a well-established manufacturing platform, resulting in the high-quality production of rotor blades.

For instance, as of last October 2024, the world's biggest offshore wind farm, Rheinisch-Westfalische Elektrizitatswerk or RWE, stated that its 108-m-long blade is under construction at Siemens Gamesa factory in Hull, UK, marking a huge milestone for the construction of the flagship project. RWE states that the 108-meter-long blade is equipped in each 100 X 14 MW offshore wind turbine for the Sofia Offshore Wind project. Upon completion of construction, the offshore wind farm project will provide nearly 1.4 GW of electricity to power approximately 1.2 million homes yearly across the United Kingdom.

Rise in Investment in Wind Turbine Projects is Proliferating Market Growth

With the rising demand for renewable energy across the globe, wind turbine projects are being developed worldwide in response to the challenges posed by climate change and the significant shift toward renewable energy sources. The projects also ensure a reliable energy supply and promote economic growth in the local communities. Expanding the infrastructure of wind turbines will become very important in the long run to reduce dependence on nonrenewable resources. It will spur efforts toward reaching international climate agreements, promoting wind turbine rotor blade market growth.

For instance, in September 2024, Aitiip Technology Center (Zaragoza, Spain) publicized the launch of the Blade2Circ project. The new project, which comes with an investment budget of almost USD 4.22 million funded by the European Union (EU), deals with the development of a new generation of wind turbine blades based on high-performance bio-composite materials. Aitiip is leading this project in collaboration with 11 partners from France, Sweden, Belgium, Ireland, and Spain. The project will focus on the design of recyclable parts to facilitate the disassembly of blades and aim to develop ways of improving blade performance, lifetime, and dismantling efficiently, thereby contributing to environmental sustainability and significantly augmenting the market growth rate.

Technological Upgradations of Wind Turbine Blades is Amplifying the Market Growth

Technological advancement is necessary for wind turbine blades for an increase in efficiency and reliability in energy production. Long, lightweight blades created from advanced composites, such as carbon fibers, improve energy capture and are cost-effective. Moreover, technological improvisations facilitate the ability of turbines to operate at low wind speeds while maximizing output and minimizing the number of turbines needed. The integration of smart controls and sensors also permits real-time performance monitoring, which maximizes operation efficacy and increases the lifespan of turbines, thus fueling the market growth. These upgrades are crucial for meeting future energy needs as the demand for renewable energy continues to rise.

For instance, in March 2022, the Zero Waste Blade Research (ZEBRA) project marked a new step forward in the industry's transition towards the circular economy with the production of the first 100% recyclable wind turbine blade. The 62m blade is composed of Arkema's Elium resin, a thermoplastic resin highly known for its recyclable properties, and it is combined with Owens Corning's technologically advanced, high-performance glass fabrics. Within the project, LM Wind Power constructed and designed the world's largest wind turbine blade made of thermoplastic materials at its Ponferrada plant in Spain. Liquid thermoplastic resin is essentially suitable for building large turbine blade parts through resin infusion, together with Owens Corning high-performance fabrics, which in turn improves the performance of the wind turbines, thereby driving the market growth.

Introduction of Supportive Government Policies and Regulations is Augmenting the Market Growth

Government policies are vital for the wind turbine rotor blade market's growth since the regulations facilitate the development of wind farms and renewable energy power projects. Supportive policies, incentives, and subsidies tend to attract investments in wind power in terms of decreasing carbon emissions and reducing reliance on fossil fuels. With targets set by various nations for renewables, these initiatives spur the demand for sophisticated rotor blades, which play a key role in improving the efficiency of the turbines, thereby facilitating market growth. Government support also stimulates innovation in terms of blade design and material, to improve sustainability. Ultimately, such initiatives are crucial for the improved global shift to clean sources of energy.

For instance, in May 2024, the United Kingdom government announced a hefty investment of USD 90.75 million for setting up a world-class facility at Blyth, England, for the testing of massive super wind turbine blades spanning up to 150 meters. Moreover, the new facility located at Offshore Renewable Energy (ORE) Catapult's National Renewable Energy Centre can reduce nearly 2.5 million tonnes of harmful CO2 emissions, thereby contributing to the UK's environmental sustainability and promoting market growth.

Increase in Demand for Turbine Blades for Onshore Wind is Fostering Market Growth

Onshore wind turbine blades ensure efficient harvesting of wind energy. The longer onshore wind turbine blades are designed to be more aerodynamic, capturing more energy at lower wind speeds. Additionally, improvement in the composition material and technology of the blades contribute to better overall performance and reliability in turbines. Moreover, increased demand for alternative sources of energy further bolsters the importance of onshore wind turbine blades in support of efforts to achieve sustainability and economic development within the local communities.

For example, in October 2024, China's SANY Renewable Energy Co., Ltd. installed an onshore 15MW wind turbine SI-270150, in Tongyu, Jilin Province. The onshore wind turbine is a flagship project developed on the 12.X-16.X MW platform which boasts an extended lifespan of 25 to 30 years. SI-270150 turbine blades reach 430 ft long (131 m), which covers a maximum swept area of 616,298 sq ft (57,256 sq m). The large swept area of the turbine facilitates its capability to capture a large scale of wind, allowing a single unit to generate electricity that can power nearly 1,60,000 households/year, thereby amplifying the market growth. Sany also claims to have broken the record for the largest onshore turbine rotor blade diameter at 886 ft (270 m), surpassing the previous largest onshore wind turbine in the world (Goldwind's 12-MW wind turbine) launched in 2023 with a 787-ft (240-m) rotor blade diameter.

Asia-Pacific is the Fastest Growing Region

Asia-Pacific has emerged as the fastest-growing region and is expected to continue being the fastest-growing market in the coming years. This growth can be attributed to large investments in clean energy generation, rapid urbanization, and improving technology that enhances efficiency in energy production. Furthermore, China and India are expanding their renewable energy capacity, supported by government policies that have bolstered wind projects. A strong industrial base in the region and increased research and development provide efficient rotor blades, making wind energy a competitive choice against fossil fuels and driving its demand in the region.

For instance, in September 2022, Inox Wind successfully commissioned India's first 3.3 MW wind turbine, equipped with the latest technology and consisting of 146-meter-long rotor blades, which is the largest in class, at Jasdan, Gujarat. The turbine is specially designed for low-wind regions and is expected to minimize energy costs. This wind turbine offers one of the lowest possible costs of energy thereby providing a sustainable edge in the market.

Future Market Scenario (2025 - 2032F)

Future government investment in the production of wind turbine rotor blades will be a crucial factor for market growth. Supportive policies with incentives to curb carbon emissions will lead to increased funds being invested into wind power projects, therefore increasing demand for efficient rotor blades and catering to extensive market growth opportunities in the future.

A smart wind turbine blade, containing sensors to monitor wind conditions, can change the blade pitch and shape in real-time for optimal performance. Thus, this technology opens more opportunities for energy efficiency with increased power output and improvement in adaptability to a change in wind conditions in order to achieve more efficient and sustainable renewable energy generation.

Glass fiber is very important for the future of manufacturing wind turbine rotor blades, as it saves money, is strong and durable, and enables the production of longer, lighter blades which enhance aerodynamic efficiency and energy capture significantly in the growing renewable energy market, thereby leading to ample opportunities for growth.

Key Players Landscape and Outlook

The market participants in wind turbine rotor blades are facing fierce competition to gain a competitive edge. Companies are investing a hefty sum towards the technological advancements of wind turbine rotor blades and forming strategic alliances to properly exploit networks and cost-cutting measures. The competitive environment fosters ongoing enhancement and innovation, enabling firms to more effectively address the increasing demand for sustainable energy solutions while optimizing the use of wind turbine rotor blades.

In June 2023, Rheinisch-Westfalische Elektrizitatswerk (RWE) AG announced that it is pushing sustainability in wind power by deploying the world's first recyclable wind turbine rotor blades at its Thor offshore wind farm in Denmark. Out of 72 Siemens Gamesa SG 14-236 DD turbines, 40 will be equipped with these pioneering blades, designed to be recycled at the end of their life. This project will support RWE's approach to circularity and net-zero emissions as part of its broader sustainability strategy for renewable energy. The facility is scheduled to come on stream in 2026, providing a lot of green electricity for over one million Danish households.

Product Code: MX12474

Table of Contents

1. Project Scope and Definitions

2. Research Methodology

3. Executive Summary

4. Voice of Customer

  • 4.1. Respondent Demographics
  • 4.2. Factors Considered in Purchase Decisions
    • 4.2.1. Cost
    • 4.2.2. Efficacy
    • 4.2.3. Durability
    • 4.2.4. Capacity
    • 4.2.5. Blade Material

5. Global Wind Turbine Rotor Blade Market Outlook, 2018-2032F

  • 5.1. Market Size Analysis & Forecast
    • 5.1.1. By Value
  • 5.2. Market Share Analysis & Forecast
    • 5.2.1. By Material Type
      • 5.2.1.1. Glass Fibre
      • 5.2.1.2. Carbon Fibre
      • 5.2.1.3. Others
    • 5.2.2. By Size
      • 5.2.2.1. Up-to 27 Meters
      • 5.2.2.2. 28-37 Meters
      • 5.2.2.3. 38-50 Meters
      • 5.2.2.4. More Than 50 Meters
    • 5.2.3. By Application
      • 5.2.3.1. Onshore
      • 5.2.3.2. Offshore
    • 5.2.4. By Region
      • 5.2.4.1. North America
      • 5.2.4.2. Europe
      • 5.2.4.3. Asia-Pacific
      • 5.2.4.4. South America
      • 5.2.4.5. Middle East and Africa
    • 5.2.5. By Company Market Share Analysis (Top 5 Companies and Others - By Value, 2024)
  • 5.3. Market Map Analysis, 2024
    • 5.3.1. By Material Type
    • 5.3.2. By Size
    • 5.3.3. By Application
    • 5.3.4. By Region

6. North America Wind Turbine Rotor Blade Market Outlook, 2018-2032F*

  • 6.1. Market Size Analysis & Forecast
    • 6.1.1. By Value
  • 6.2. Market Share Analysis & Forecast
    • 6.2.1. By Material Type
      • 6.2.1.1. Glass Fibre
      • 6.2.1.2. Carbon Fibre
      • 6.2.1.3. Others
    • 6.2.2. By Size
      • 6.2.2.1. Up-to 27 Meters
      • 6.2.2.2. 28-37 Meters
      • 6.2.2.3. 38-50 Meters
      • 6.2.2.4. More Than 50 Meters
    • 6.2.3. By Application
      • 6.2.3.1. Onshore
      • 6.2.3.2. Offshore
    • 6.2.4. By Country Share
      • 6.2.4.1. United States
      • 6.2.4.2. Canada
      • 6.2.4.3. Mexico
  • 6.3. Country Market Assessment
    • 6.3.1. United States Wind Turbine Rotor Blade Market Outlook, 2018-2032F*
      • 6.3.1.1. Market Size Analysis & Forecast
        • 6.3.1.1.1. By Value
      • 6.3.1.2. Market Share Analysis & Forecast
        • 6.3.1.2.1. By Material Type
          • 6.3.1.2.1.1. Glass Fibre
          • 6.3.1.2.1.2. Carbon Fibre
          • 6.3.1.2.1.3. Others
        • 6.3.1.2.2. By Size
          • 6.3.1.2.2.1. Up-to 27 Meters
          • 6.3.1.2.2.2. 28-37 Meters
          • 6.3.1.2.2.3. 38-50 Meters
          • 6.3.1.2.2.4. More Than 50 Meters
        • 6.3.1.2.3. By Application
          • 6.3.1.2.3.1. Onshore
          • 6.3.1.2.3.2. Offshore
    • 6.3.2. Canada
    • 6.3.3. Mexico

All segments will be provided for all regions and countries covered

7. Europe Wind Turbine Rotor Blade Market Outlook, 2018-2032F

  • 7.1. Germany
  • 7.2. France
  • 7.3. Italy
  • 7.4. United Kingdom
  • 7.5. Russia
  • 7.6. Netherlands
  • 7.7. Spain
  • 7.8. Turkey
  • 7.9. Poland

8. Asia-Pacific Wind Turbine Rotor Blade Market Outlook, 2018-2032F

  • 8.1. India
  • 8.2. China
  • 8.3. Japan
  • 8.4. Australia
  • 8.5. Vietnam
  • 8.6. South Korea
  • 8.7. Indonesia
  • 8.8. Philippines

9. South America Wind Turbine Rotor Blade Market Outlook, 2018-2032F

  • 9.1. Brazil
  • 9.2. Argentina

10. Middle East and Africa Wind Turbine Rotor Blade Market Outlook, 2018-2032F

  • 10.1. Saudi Arabia
  • 10.2. UAE
  • 10.3. South Africa

11. Porter's Five Forces Analysis

12. PESTLE Analysis

13. Market Dynamics

  • 13.1. Market Drivers
  • 13.2. Market Challenges

14. Market Trends and Developments

15. Case Studies

16. Competitive Landscape

  • 16.1. Competition Matrix of Top 5 Market Leaders
  • 16.2. SWOT Analysis for Top 5 Players
  • 16.3. Key Players Landscape for Top 10 Market Players
    • 16.3.1. SANY Renewable Energy Co., Ltd
      • 16.3.1.1. Company Details
      • 16.3.1.2. Key Management Personnel
      • 16.3.1.3. Products and Services
      • 16.3.1.4. Financials (As Reported)
      • 16.3.1.5. Key Market Focus and Geographical Presence
      • 16.3.1.6. Recent Developments/Collaborations/Partnerships/Mergers and Acquisition
    • 16.3.2. GE Vernova Inc.
    • 16.3.3. Vestas Wind Systems A/S
    • 16.3.4. Senvion India Private Limited
    • 16.3.5. RWE AG
    • 16.3.6. Suzlon Energy Limited
    • 16.3.7. Nordex SE
    • 16.3.8. Siemens Gamesa Renewable Energy, S.A.U.
    • 16.3.9. RTP Company
    • 16.3.10. TPI Composites Inc.

Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.

17. Strategic Recommendations

18. About Us and Disclaimer

Product Code: MX12474

List of Tables

  • Table 1. Pricing Analysis of Products from Key Players
  • Table 2. Competition Matrix of Top 5 Market Leaders
  • Table 3. Mergers & Acquisitions/ Joint Ventures (If Applicable)
  • Table 4. About Us - Regions and Countries Where We Have Executed Client Projects

List of Figures

  • Figure 1. Global Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 2. Global Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 3. Global Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 4. Global Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 5. Global Wind Turbine Rotor Blade Market Share (%), By Region, 2018-2032F
  • Figure 6. North America Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 7. North America Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 8. North America Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 9. North America Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 10. North America Wind Turbine Rotor Blade Market Share (%), By Country, 2018-2032F
  • Figure 11. United States Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 12. United States Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 13. United States Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 14. United States Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 15. Canada Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 16. Canada Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 17. Canada Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 18. Canada Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 19. Mexico Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 20. Mexico Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 21. Mexico Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 22. Mexico Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 23. Europe Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 24. Europe Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 25. Europe Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 26. Europe Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 27. Europe Wind Turbine Rotor Blade Market Share (%), By Country, 2018-2032F
  • Figure 28. Germany Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 29. Germany Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 30. Germany Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 31. Germany Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 32. France Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 33. France Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 34. France Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 35. France Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 36. Italy Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 37. Italy Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 38. Italy Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 39. Italy Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 40. United Kingdom Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 41. United Kingdom Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 42. United Kingdom Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 43. United Kingdom Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 44. Russia Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 45. Russia Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 46. Russia Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 47. Russia Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 48. Netherlands Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 49. Netherlands Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 50. Netherlands Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 51. Netherlands Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 52. Spain Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 53. Spain Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 54. Spain Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 55. Spain Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 56. Turkey Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 57. Turkey Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 58. Turkey Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 59. Turkey Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 60. Poland Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 61. Poland Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 62. Poland Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 63. Poland Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 64. South America Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 65. South America Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 66. South America Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 67. South America Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 68. South America Wind Turbine Rotor Blade Market Share (%), By Country, 2018-2032F
  • Figure 69. Brazil Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 70. Brazil Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 71. Brazil Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 72. Brazil Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 73. Argentina Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 74. Argentina Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 75. Argentina Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 76. Argentina Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 77. Asia-Pacific Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 78. Asia-Pacific Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 79. Asia-Pacific Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 80. Asia-Pacific Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 81. Asia-Pacific Wind Turbine Rotor Blade Market Share (%), By Country, 2018-2032F
  • Figure 82. India Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 83. India Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 84. India Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 85. India Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 86. China Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 87. China Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 88. China Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 89. China Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 90. Japan Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 91. Japan Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 92. Japan Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 93. Japan Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 94. Australia Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 95. Australia Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 96. Australia Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 97. Australia Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 98. Vietnam Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 99. Vietnam Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 100. Vietnam Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 101. Vietnam Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 102. South Korea Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 103. South Korea Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 104. South Korea Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 105. South Korea Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 106. Indonesia Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 107. Indonesia Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 108. Indonesia Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 109. Indonesia Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 110. Philippines Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 111. Philippines Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 112. Philippines Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 113. Philippines Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 114. Middle East & Africa Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 115. Middle East & Africa Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 116. Middle East & Africa Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 117. Middle East & Africa Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 118. Middle East & Africa Wind Turbine Rotor Blade Market Share (%), By Country, 2018-2032F
  • Figure 119. Saudi Arabia Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 120. Saudi Arabia Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 121. Saudi Arabia Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 122. Saudi Arabia Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 123. UAE Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 124. UAE Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 125. UAE Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 126. UAE Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 127. South Africa Wind Turbine Rotor Blade Market, By Value, In USD Billion, 2018-2032F
  • Figure 128. South Africa Wind Turbine Rotor Blade Market Share (%), By Material Type, 2018-2032F
  • Figure 129. South Africa Wind Turbine Rotor Blade Market Share (%), By Size, 2018-2032F
  • Figure 130. South Africa Wind Turbine Rotor Blade Market Share (%), By Application, 2018-2032F
  • Figure 131. By Material Type Map-Market Size (USD Billion) & Growth Rate (%), 2024
  • Figure 132. By Size Map-Market Size (USD Billion) & Growth Rate (%), 2024
  • Figure 133. By Application Map-Market Size (USD Billion) & Growth Rate (%), 2024
  • Figure 134. By Region Map-Market Size (USD Billion) & Growth Rate (%), 2024
Have a question?
Picture

Jeroen Van Heghe

Manager - EMEA

+32-2-535-7543

Picture

Christine Sirois

Manager - Americas

+1-860-674-8796

Questions? Please give us a call or visit the contact form.
Hi, how can we help?
Contact us!