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市場調査レポート
商品コード
1640197
水平軸風力タービンの市場規模、シェア、成長分析:タイプ別、操作別、用途別、地域別 - 産業予測 2025~2032年Horizontal Axis Wind Turbine Market Size, Share, Growth Analysis, By Type (Large, Small), By Operation (Upwind, Downwind), By Application, By Region - Industry Forecast 2025-2032 |
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水平軸風力タービンの市場規模、シェア、成長分析:タイプ別、操作別、用途別、地域別 - 産業予測 2025~2032年 |
出版日: 2025年01月21日
発行: SkyQuest
ページ情報: 英文 221 Pages
納期: 3~5営業日
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世界の水平軸風力タービン市場規模は、2023年に452億4,000万米ドルと評価され、2024年の483億6,000万米ドルから2032年には824億7,000万米ドルに成長し、予測期間中(2025-2032年)のCAGRは6.9%で成長する見通しです。
2023年10月現在、風力エネルギー市場は大きな成長の可能性を示しており、Global Wind Energy Councilによると、2023年の92.4GWから2019年には494.6GWへと目覚ましい伸びを示しています。水平軸風力タービン(HAWT)は、プロペラのようなブレードを通して直線的な風力エネルギーを回転力に変換し、この拡大における主要企業であり続けています。特に米国と中国における風力発電プロジェクトの増加が、この勢いを後押ししています。しかし、特に洋上風力発電プロジェクトが重視され、その出力容量が増加していることから、市場は課題に直面しています。全体として、風力エネルギーの短期的な見通しは依然として楽観的で、技術の継続的な進歩と再生可能エネルギーインフラへの投資に支えられています。
Global Horizontal Axis Wind Turbine Market size was valued at USD 45.24 billion in 2023 and is poised to grow from USD 48.36 billion in 2024 to USD 82.47 billion by 2032, growing at a CAGR of 6.9% during the forecast period (2025-2032).
As of October 2023, the wind energy market demonstrates significant growth potential, with an impressive increase from 92.4 GW in 2023 to 494.6 GW in 2019, according to the Global Wind Energy Council. Horizontal-axis wind turbines (HAWTs) remain a key player in this expansion, converting linear wind energy into rotational power through their propeller-like blades. The rising number of wind farm projects, particularly in the U.S. and China, is driving this momentum. However, the market faces challenges, particularly from the growing emphasis on offshore wind projects and their increased output capacities. Overall, the near-term outlook for wind energy remains optimistic, bolstered by ongoing advancements in technology and investment in renewable energy infrastructure.
Top-down and bottom-up approaches were used to estimate and validate the size of the Global Horizontal Axis Wind Turbine market and to estimate the size of various other dependent submarkets. The research methodology used to estimate the market size includes the following details: The key players in the market were identified through secondary research, and their market shares in the respective regions were determined through primary and secondary research. This entire procedure includes the study of the annual and financial reports of the top market players and extensive interviews for key insights from industry leaders such as CEOs, VPs, directors, and marketing executives. All percentage shares split, and breakdowns were determined using secondary sources and verified through Primary sources. All possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data.
Global Horizontal Axis Wind Turbine Market Segmental Analysis
Global Horizontal Axis Wind Turbine Market is segmented by Type, Operation, Application and region. Based on Type, the market is segmented into Large and Small. Based on Operation, the market is segmented into Upwind and Downwind. Based on Application, the market is segmented into Onshore and Offshore. Based on region, the market is segmented into North America, Europe, Asia Pacific, Latin America and Middle East & Africa.
Driver of the Global Horizontal Axis Wind Turbine Market
The Global Horizontal Axis Wind Turbine market is significantly driven by the growing reliance on renewable energy sources and the increasing demand for clean energy. This market expansion is supported by both private and public investments in utility-scale projects and ongoing initiatives to explore offshore wind project opportunities. Rapid advancements in technology, particularly in developing sustainable energy systems like fixed and floating offshore wind projects, further encourage this growth. Key factors such as minimal land usage, low maintenance demands, and reduced labor costs also contribute positively to market share. Additionally, strong research and development efforts aimed at improving energy generation capacity utilization, along with heightened awareness of water conservation, government incentives for energy efficiency, escalating energy requirements, and a rising proportion of renewable energy in electricity generation, bolster market dynamics. However, it is important to note that the structural costs, electrical networks, and turbines for offshore installations are typically higher compared to onshore counterparts.
Restraints in the Global Horizontal Axis Wind Turbine Market
The Global Horizontal Axis Wind Turbine market faces notable challenges primarily related to the transportation and installation of these massive structures. The sheer size of horizontal axis wind turbines, with blades reaching lengths of up to 70 meters and weighing around 20 tons, complicates logistics. Navigating narrow, winding roads in mountainous regions or even standard routes lined with obstacles, such as homes and utility poles, can prove difficult. Installation is equally daunting, necessitating skilled teams and potentially months of work to ensure safety and precision, from establishing foundations to assembling delicate components at heights of 80 to 100 meters. Furthermore, maintenance is labor-intensive, requiring specialists to function under challenging conditions. Regulatory barriers also impede progress, with many governments enforcing minimum distance requirements between turbines and residences, often necessitating noise assessments. Although incentive programs exist to promote renewable energy, local policies can fluctuate, influenced by varying political, social, and environmental factors, ultimately constraining market growth.
Market Trends of the Global Horizontal Axis Wind Turbine Market
The Global Horizontal Axis Wind Turbine market is witnessing a transformative trend, particularly fueled by technological advancements in offshore wind turbine installations aimed at cost reduction. Key innovations, such as elevating voltage levels to 66 kV, are significantly minimizing electrical array cable expenses while optimizing wind turbine spacing to balance costs and performance. The standard practice of spacing offshore turbines 6 to 8 D apart is being refined, reflecting ongoing research and development efforts. As installation costs continue to decline, driven by strategic engineering solutions and economies of scale, the market is poised for robust growth, enhancing the renewable energy landscape globally.