市場調查報告書
商品編碼
1451668
風力渦輪機轉子葉片市場報告,按葉片材料(碳纖維、玻璃纖維等)、葉片長度(45米以下、45-60米、60米以上)、部署位置(陸上、海上)和地區分類,2024年- 2032Wind Turbine Rotor Blade Market Report by Blade Material (Carbon Fiber, Glass Fiber, and Others), Blade Length (Below 45 Meters, 45-60 Meters, Above 60 Meters), Location of Deployment (Onshore, Offshore), and Region 2024-2032 |
2023年,全球風力渦輪機轉子葉片市場規模達到234億美元。展望未來, IMARC Group預計到2032年市場規模將達到471億美元,2024-2032年複合年成長率(CAGR)為7.9%。
風力渦輪機轉子葉片是不可或缺的翼型部件,旨在透過中心輪轂周圍的空氣動力吸收動能產生扭矩來發電。它通常包含採用葉尖速比 (TSR) 結構的三個葉片,可提供低慣性和最佳機械強度。除此之外,風力渦輪機轉子葉片有助於掃掠和捕獲更多面積和風,實現更快的葉尖轉動,並將這種能量轉化為旋轉運動。基於這些特性,它在各種陸上和海上地點得到了廣泛的應用,以航行和產生可再生能源。目前,商用風力渦輪機馬達具有不同的葉片形狀、傾斜角度、構造和尺寸。
對替代能源的需求不斷成長,以及風能發電技術的廣泛應用以最大限度地提高發電量,並補充了全球範圍內的產品使用。對高效能源的需求不斷成長以及石油資源的持續枯竭進一步支持了這一點。與此一致的是,不斷升級的環境問題促使各國政府推動風力渦輪機等環保資產的採用,以減少碳排放,這是另一個促進成長的因素。此外,擴大使用鋁、木材和塑膠等材料來以具有成本效益的價格設計先進的風力渦輪機轉子葉片,這支撐了市場的成長。此外,飛機機翼結構設計產品變體的出現,以提高運作效率,以及玻璃纖維增強塑膠和環氧樹脂在風力渦輪機轉子葉片中的應用,都有助於市場成長。其他因素,例如海上地區正在進行的風力系統安裝以及主要參與者之間的戰略合作以推出輕型、可回收的風力轉子葉片,正在為市場創造積極的前景。
The global wind turbine rotor blade market size reached US$ 23.4 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 47.1 Billion by 2032, exhibiting a growth rate (CAGR) of 7.9% during 2024-2032.
A wind turbine rotor blade is an indispensable airfoil-shaped component designed to produce electricity by absorbing kinetic energy to torque through aerodynamic forces around a central hub. It usually encompasses three blades in a tip-speed ratio (TSR) structure that offers low inertia and optimal mechanical strength. Apart from this, the wind turbine rotor blade aids in sweeping and capturing more area and wind, enabling faster tip turns, and converting this energy into rotary motions. Based on these properties, it finds extensive applications in various onshore and offshore locations to sail and generate renewable energy. At present, wind turbine motors are commercially available in varying blade shapes, inclination angles, configurations, and sizes.
The increasing need for alternative energy sources and the extensive employment of wind energy power generation technology to maximize electricity production has supplemented product usage across the globe. This is further supported by the rising demand for efficient energy sources and the ongoing depletion of petroleum-based resources. In line with this, escalating environmental concerns have prompted governments to promote the uptake of eco-friendly assets, such as wind turbines, to mitigate carbon emissions, which is acting as another growth-inducing factor. Moreover, the rising employment of various materials, such as aluminum, wood, and plastics, to engineer advanced wind turbine rotor blades at cost-effective prices is supporting the market growth. Additionally, the advent of aircraft wing structures designed product variants to improve operational efficiency and the incorporation of glass fiber reinforced plastics and epoxy in wind turbine rotor blades are contributing to the market growth. Other factors, such as ongoing wind system installation across offshore areas and strategic collaborations amongst key players to launch lightweight, recyclable wind rotor blades, are creating a positive outlook for the market.
IMARC Group provides an analysis of the key trends in each sub-segment of the global wind turbine rotor blade market report, along with forecasts at the global, regional and country level from 2024-2032. Our report has categorized the market based on blade material, blade length and location of deployment.
Carbon Fiber
Glass Fiber
Others
Below 45 Meters
45-60 Meters
Above 60 Meters
Onshore
Offshore
North America
United States
Canada
Asia-Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
The competitive landscape of the industry has also been examined along with the profiles of the key players being Acciona S.A., Enercon GmbH, INOX Wind Limited, LM Wind Power (General Electric Company), Moog Inc., Nordex SE, SGS S.A., Siemens Gamesa Renewable Energy S.A. (Siemens Energy AG), Suzlon Energy Limited and Vestas Wind Systems A/S.