시장보고서
상품코드
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육상 풍력발전 시장 : 구성요소별(터빈, 전기 인프라), 터빈 정격별(2 MW 미만, 2-3 MW, 3-5 MW, 5 MW 이상), 지역별 - 세계 예측(-2035년)

Onshore Wind Market by Component (Turbines, Electrical Infrastructure), By Turbine Rating (below 2 MW, 2-3 MW, 3-5 MW, and above 5 MW) and Region - Global Forecast to 2035

발행일: | 리서치사: 구분자 MarketsandMarkets | 페이지 정보: 영문 256 Pages | 배송안내 : 즉시배송

    
    
    




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한글목차
영문목차
※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

육상 풍력발전 시장 규모는 예측 기간 동안 CAGR 10.3%로 성장하여 2026년 추정 1,324억 7,000만 달러에서 2035년에는 3,211억 4,000만 달러에 달할 것으로 전망됩니다.

시장 확대는 재생에너지 발전의 급속한 성장, 에너지 안보에 대한 우려 고조, 야심 찬 탈탄소화 목표, 그리고 청정 전력 도입을 촉진하는 정부의 지원 정책에 힘입어 이루어지고 있습니다.

조사 범위
조사 대상 기간 2023-2035년
기준 연도 2025년
예측 기간 2026-2035년
단위 달러
부문 구성요소, 터빈 정격, 지역별
대상 지역 북미, 아시아태평양, 유럽, 남미, 중동 및 아프리카

각국이 저탄소 에너지 시스템으로의 전환을 추진하는 가운데, 육상 풍력발전은 경쟁력 있는 발전 비용, 성숙한 기술, 비교적 짧은 프로젝트 개발 기간 덕분에 비용 대비 효과가 가장 높고 확장성이 뛰어난 재생에너지 원 중 하나가 되었습니다. 5MW를 초과하는 대형 터빈, 허브 높이 증대, 로터 블레이드 길이 연장, AI를 활용한 예측 유지보수, 디지털 트윈, 실시간 자산 모니터링과 같은 기술의 발전으로 인해 발전량과 운영 효율이 향상되고 있습니다. 노후화된 풍력발전소의 리파워링 및 배터리 저장 시스템 도입을 통해 송전망의 신뢰성과 프로젝트의 경제성이 더욱 향상되고 있습니다. 그러나 시장에서는 여전히 허가 취득 절차의 장기화, 부지 확보의 복잡성, 송전 인프라의 제약, 특정 지역 사회에서의 반대와 같은 과제에 직면해 있으며, 이러한 요인들은 장기적인 성장 전망이 견실함에도 불구하고 프로젝트 실행을 지연시키고 개발 비용을 증가시키는 요인이 될 수 있습니다.

Onshore Wind Market-IMG1

"부문별로 보면 전기 인프라 부문이 예측 기간 동안 규모 면에서 2위를 차지할 것으로 전망됩니다."

구성요소별로 살펴보면, 송전, 계통연계, 신뢰성 높은 전력 공급에 대한 수요가 증가하는 것을 배경으로, 예측 기간 동안 육상 풍력 시장에서 전기 인프라 부문이 두 번째로 큰 규모를 차지할 것으로 예상됩니다. 육상 풍력발전 용량이 확대됨에 따라, 더 많은 재생 가능 전력을 수용하기 위해 변전소, 변압기, 개폐장치, 케이블 및 고전압 송전망에 대한 투자가 증가하고 있습니다. 송전망 현대화를 위한 노력과 스마트 그리드 기술의 도입 역시 선진적인 전력 인프라에 대한 수요를 더욱 촉진하고 있습니다. 또한, 대용량 터빈이나 유틸리티 규모의 풍력발전소를 도입하기 위해서는 안정적인 전력 공급을 확보하기 위한 견고한 계통연계 시스템이 필요하며, 전력 인프라는 프로젝트 개발 전반과 장기적인 운영 효율성 측면에서 필수적인 요소로 자리 잡고 있습니다.

"터빈 정격별로는 2-3 MW 구간이 예측 기간 동안 세 번째로 높은 성장률을 기록할 것으로 전망됩니다."

터빈 정격별로 살펴보면, 2-3 MW 부문은 성능, 비용, 도입 유연성 간의 균형이 뛰어나기 때문에 예측 기간 동안 세 번째로 높은 성장률을 기록할 것으로 전망됩니다. 이러한 터빈은 풍력 자원이 중간 수준인 지역이나, 부지 확보 및 송전망 용량 제약으로 인해 대형 터빈 도입이 제한되는 프로젝트에 특히 적합합니다. 또한, 초기 투자 비용을 낮게 유지하면서도 매력적인 수익을 기대할 수 있기 때문에 신흥 시장이나 분산형 유틸리티 규모의 설비에서도 널리 채택되고 있습니다. 또한, 기존 풍력발전소의 지속적인 현대화와 중규모 개발업체들의 수요 증가로 인해, 향후 몇 년간 2-3 MW 부문은 꾸준한 성장을 이어갈 것으로 예상됩니다.

"지역별로 보면 예측 기간 동안 유럽이 두 번째로 큰 시장 점유율을 차지할 것으로 추정됩니다."

유럽의 육상 풍력발전 시장은 해당 지역의 재생에너지 시장의 견조한 성장세, 탈탄소화 목표, 정책 지원, 친환경 발전 인프라에 대한 지속적인 투자에 힘입어 예측 기간 동안 시장 점유율 2위를 차지할 것으로 추정됩니다. 독일, 스페인, 영국, 프랑스, 스웨덴, 이탈리아 등의 국가들은 경쟁 입찰, 지속가능한 에너지 전환 프로그램, 지원 정책을 통해 육상 풍력발전 용량 확대에 막대한 투자를 하고 있습니다. 이 지역에는 터빈 제조업체, 육상 풍력발전 프로젝트 개발업체, 송전망 사업자, 엔지니어링 서비스 제공업체로 구성된 확고한 생태계가 형성되어 있으며, 효율적인 풍력 터빈과 디지털 솔루션에 대한 투자가 이루어지고 있습니다. 대용량 육상 풍력 터빈의 활용 확대, 기존 프로젝트의 설비 현대화, 송전망 인프라 확충이 유럽의 육상 풍력발전 시장을 견인할 것입니다. 유럽의 ‘그린 딜(Green Deal)’ 및 ‘REPowerEU’ 프로그램의 일환으로 각국 정부가 추진하는 조치에 더해, 각국이 설정한 재생에너지 목표 역시 에너지 안보 확보와 탄소 배출량 감축을 위한 육상 풍력발전소 개발에 대한 추가 투자를 촉진할 것으로 보입니다. 또한, 축전지 시스템, 디지털 플랫폼, 스마트 그리드의 도입으로 송전망의 신뢰성이 향상되어, 지역 육상 풍력발전 시장의 기업들에게 수익성 높은 기회가 창출되고 있습니다.

본 보고서에서는 전 세계 육상 풍력발전 시장을 조사하여, 시장 개요, 시장 성장에 영향을 미치는 다양한 요인에 대한 분석, 기술 및 특허 동향, 법규제 환경, 사례 연구, 시장 규모 추정 및 전망, 각종 분류·지역/주요 국가별 상세 분석, 경쟁 현황, 주요 기업 개요 등을 정리하고 있습니다.

자주 묻는 질문

  • 육상 풍력발전 시장 규모는 어떻게 예측되나요?
  • 육상 풍력발전 시장의 성장 요인은 무엇인가요?
  • 육상 풍력발전 시장에서 전기 인프라 부문은 어떤 역할을 하나요?
  • 2-3 MW 터빈 정격의 성장 전망은 어떤가요?
  • 유럽의 육상 풍력발전 시장 점유율은 어떻게 되나요?

목차

제1장 소개

제2장 주요 요약

제3장 주요 인사이트

제4장 시장 개요

제5장 업계 동향

제6장 기술의 진보, AI의 영향, 특허, 혁신, 향후 응용

제7장 규제 상황과 지속가능성에 대한 대처

제8장 고객 상황과 구매 행동

제9장 육상 풍력발전 시장 : 구성요소별

제10장 육상 풍력발전 시장 : 터빈 정격 출력별

제11장 육상 풍력발전 시장 : 지역별

제12장 경쟁 구도

제13장 기업 개요

제14장 조사 방법

제15장 부록

KSM 26.07.20

The onshore wind market is projected to grow at a CAGR of 10.3% during the forecast period, increasing from an estimated USD 132.47 billion in 2026 to USD 321.14 billion by 2035. Market expansion is driven by the rapid growth of renewable energy generation, rising energy security concerns, ambitious decarbonization targets, and supportive government policies promoting clean power deployment.

Scope of the Report
Years Considered for the Study2023-2035
Base Year2025
Forecast Period2026-2035
Units ConsideredUSD Million
SegmentsBy Component, By Turbine Rating, and Region
Regions coveredNorth America, Asia Pacific, Europe, South America, Middle East & Africa

As countries transition toward low-carbon energy systems, onshore wind has become one of the most cost-effective and scalable renewable energy sources due to its competitive generation costs, mature technology, and relatively shorter project development timelines. Technological advancements, including larger turbines exceeding 5 MW, taller hub heights, longer rotor blades, AI-enabled predictive maintenance, digital twins, and real-time asset monitoring, are improving energy output and operational efficiency. Repowering aging wind farms and integrating battery energy storage systems are further enhancing grid reliability and project economics. However, the market continues to face challenges related to lengthy permitting processes, land acquisition complexities, transmission infrastructure constraints, and local community opposition in certain regions, which can delay project execution and increase development costs despite strong long-term growth prospects.

Onshore Wind Market - IMG1

"By component, the electrical infrastructure segment is expected to be the second largest component segment in the onshore wind market during the forecast period."

By component, the electrical infrastructure segment is expected to be the second largest segment in the onshore wind market during the forecast period, supported by the growing need for power transmission, grid integration, and reliable energy distribution. As onshore wind capacity expands, investments in substations, transformers, switchgear, cables, and high-voltage transmission networks are increasing to accommodate larger volumes of renewable electricity. Grid modernization initiatives and the integration of smart grid technologies are further driving demand for advanced electrical infrastructure. Additionally, the deployment of high-capacity turbines and utility-scale wind farms requires robust interconnection systems to ensure stable power delivery, making electrical infrastructure an indispensable component of overall project development and long-term operational efficiency.

"By Turbine Rating, the 2-3 MW segment is projected to register the third fastest growth in the onshore wind market during the forecast period."

By turbine rating, the 2-3 MW segment is projected to register the third-fastest growth in the onshore wind market during the forecast period, driven by its balance of performance, cost, and deployment flexibility. These turbines are particularly well-suited for regions with moderate wind resources and projects where land availability or grid capacity limits the use of larger machines. They are also widely adopted in emerging markets and distributed utility-scale installations because they offer attractive returns with lower upfront investment. In addition, ongoing upgrades of older wind farms and increasing demand from medium-sized developers are expected to support steady expansion of the 2-3 MW segment over the coming years.

"By region, Europe is estimated to account for the second-largest market share during the forecast period."

The onshore wind energy market in Europe is estimated to hold the second-largest share during the forecast period, owing to a strong regional renewable energy market, decarbonization targets, policy support, and ongoing investment in infrastructure for green power generation. Countries like Germany, Spain, the UK, France, Sweden, and Italy have made significant investments to expand onshore wind capacity through competitive auctions, sustainable energy transition programs, and supportive policies. The region has an established ecosystem of turbine manufacturers, onshore wind project developers, grid companies, and engineering services providers investing in efficient wind turbines and digital solutions. The increasing use of high-capacity onshore turbines, the repowering of existing projects, and the development of grid infrastructure will drive the onshore wind energy market in Europe. Initiatives taken by governments as part of the European Green Deal and the REPowerEU program, along with the renewable energy objectives set by individual countries, will spur further investment in onshore wind farm development to ensure energy security and reduce carbon emissions. Moreover, deployment of battery energy storage systems, digital platforms, and smart grids is enhancing grid reliability and offering lucrative opportunities for companies in the regional onshore wind energy market.

In-depth interviews have been conducted with key industry participants, subject-matter experts, C-level executives of leading market players, and industry consultants, among others, to obtain and verify critical qualitative and quantitative information and to assess future market prospects. The distribution of primary interviews is as follows:

By Company Type: Tier 1 - 45%, Tier 2 - 30%, and Tier 3 - 25%

By Designation: C-level Executives - 35%, Directors - 25%, and Others - 40%

By Region: Asia Pacific - 35%, Europe - 30%, North America - 17%, South America - 10%, and Middle East & Africa - 8%

Notes: The company tiers are defined by their total revenue as of 2025. Tier 1: > USD 1 billion, Tier 2: USD 500 million to USD 1 billion, and Tier 3: < USD 500 million.

Other designations include sales managers, engineers, and regional managers.

Siemens Energy (Germany), Mingyang Smart Energy Group Co., Ltd. (China), Vestas (Denmark), Goldwind (China), and GE Vernova (US) are among the major players in the onshore wind market. The study includes an in-depth competitive analysis of these key players, including their company profiles, recent developments, and key market strategies.

Research Coverage:

The report defines, describes, and forecasts the global onshore wind market by component, turbine rating, and region. It also offers a detailed qualitative and quantitative analysis of the market. The report comprehensively reviews the major market drivers, restraints, opportunities, and challenges. It also covers various important aspects of the market. These include an analysis of the competitive landscape, market dynamics, market value estimates, and future trends in the onshore wind market.

Key Benefits of Buying the Report

  • It provides an analysis of key drivers (Rising Global Renewable Energy Targets Fuel Onshore Wind Deployment, Government Incentives and Decarbonization Policies Support Onshore Wind Expansion), restraints (Grid Integration Constraints Limit Large-Scale Onshore Wind Projects, High capital expenditure and project development costs), opportunities (High capital expenditure and project development costs, Exp Digitalization and Advanced Turbine Technologies Enhance Project Performance), challenges (Env Transmission Infrastructure Gaps Restrict Onshore Wind Capacity Expansion) influencing the growth of the onshore wind market.
  • Market Development: Comprehensive information about lucrative markets - the report analyses the onshore wind market across varied regions.
  • Market Diversification: Exhaustive information about new products and services, untapped geographies, recent developments, and product launches in the onshore wind market.
  • Competitive Assessment: In-depth assessment of market shares, growth strategies, and service offerings of leading players like Vestas (Denmark), Goldwind Science & Technology Co., Ltd. (China), Ming Yang Smart Energy Group Co., Ltd. (China), Siemens Energy (Germany), GE Vernova (US), SANY Renewable Energy Co., Ltd. (China), Suzlon Energy Ltd. (India), Doosan Enerbility (South Korea), Dongfang Electric Wind Power Co. Ltd. (China), Envision Energy (China), Windey Energy Technology Group Co., Ltd. (China), Nordex SE (Germany), Shanghai Electric Wind Power Group (China), CRRC Shandong Wind Power (China), Hitachi Energy Ltd. (Switzerland), ABB (Switzerland), Prysmian Group (Italy), Schneider Electric (France), Inox Wind (India), Senvion India (India), ENERCON Global GmbH (Germany), and Vayona Energy Pvt. Ltd. (India) among others, in the onshore wind market.
  • Product Innovation/Development: Product innovation and continuous technological advancements are playing a pivotal role in accelerating the growth of the onshore wind market as developers seek higher energy output, improved efficiency, and lower project costs. Manufacturers are increasingly introducing next-generation onshore turbines with capacities exceeding 5 MW, larger rotor diameters, taller hub heights, lightweight composite blades, and advanced drivetrain technologies to maximize power generation across a wider range of wind conditions. At the same time, digital innovations such as AI-enabled predictive maintenance, digital twins, condition monitoring systems, and real-time performance analytics are helping operators reduce downtime and optimize asset performance. These advancements are particularly valuable for utility-scale wind farms and repowering projects, where improving energy yield, extending turbine lifespan, and lowering operating costs are essential for enhancing long-term project profitability.

TABLE OF CONTENTS

1 INTRODUCTION

  • 1.1 STUDY OBJECTIVES
  • 1.2 MARKET DEFINITION
  • 1.3 STUDY SCOPE
    • 1.3.1 MARKETS COVERED AND REGIONAL SCOPE
    • 1.3.2 INCLUSIONS AND EXCLUSIONS
    • 1.3.3 YEARS CONSIDERED
  • 1.4 CURRENCY CONSIDERED
  • 1.5 LIMITATIONS
  • 1.6 STAKEHOLDERS

2 EXECUTIVE SUMMARY

  • 2.1 MARKET HIGHLIGHTS AND KEY INSIGHTS
  • 2.2 KEY MARKET PARTICIPANTS: MAPPING OF STRATEGIC DEVELOPMENTS
  • 2.3 DISRUPTIONS IN ONSHORE WIND MARKET
  • 2.4 HIGH GROWTH SEGMENTS
  • 2.5 REGIONAL SNAPSHOT: MARKET SIZE, GROWTH RATE, AND FORECAST

3 PREMIUM INSIGHTS

  • 3.1 ATTRACTIVE OPPORTUNITIES FOR PLAYERS IN ONSHORE WIND MARKET
  • 3.2 ONSHORE WIND MARKET, BY COMPONENT AND REGION
  • 3.3 ONSHORE WIND MARKET, BY COMPONENT
  • 3.4 ONSHORE WIND MARKET, BY TURBINE RATING
  • 3.5 ONSHORE WIND MARKET, BY COUNTRY

4 MARKET OVERVIEW

  • 4.1 INTRODUCTION
  • 4.2 MARKET DYNAMICS
    • 4.2.1 DRIVERS
      • 4.2.1.1 Increasing renewable energy deployment targets
      • 4.2.1.2 Rising implementation of financial incentives to support decarbonization
    • 4.2.2 RESTRAINTS
      • 4.2.2.1 Grid connection delays, curtailment risks, and rising project costs
      • 4.2.2.2 High capital expenditure and lengthy project development cycles
    • 4.2.3 OPPORTUNITIES
      • 4.2.3.1 Strong focus on repowering aging onshore wind farms
      • 4.2.3.2 Rising adoption of digital technologies and advanced turbine designs
    • 4.2.4 CHALLENGES
      • 4.2.4.1 Insufficient onshore wind energy transmission infrastructure
  • 4.3 UNMET NEEDS AND WHITE SPACES
  • 4.4 INTERCONNECTED MARKETS AND CROSS-SECTOR OPPORTUNITIES
  • 4.5 STRATEGIC MOVES BY TIER 1/2/3 PLAYERS

5 INDUSTRY TRENDS

  • 5.1 PORTER'S FIVE FORCES ANALYSIS
    • 5.1.1 THREAT OF NEW ENTRANTS
    • 5.1.2 BARGAINING POWER OF SUPPLIERS
    • 5.1.3 BARGAINING POWER OF BUYERS
    • 5.1.4 THREAT OF SUBSTITUTES
    • 5.1.5 INTENSITY OF COMPETITIVE RIVALRY
  • 5.2 MACROECONOMIC OUTLOOK
    • 5.2.1 INTRODUCTION
    • 5.2.2 GDP TRENDS AND FORECAST
    • 5.2.3 TRENDS IN GLOBAL RENEWABLE ENERGY INDUSTRY
    • 5.2.4 TRENDS IN GLOBAL ELECTRICAL EQUIPMENT INDUSTRY
  • 5.3 VALUE CHAIN ANALYSIS
  • 5.4 ECOSYSTEM ANALYSIS
  • 5.5 PRICING ANALYSIS
    • 5.5.1 AVERAGE CAPITAL EXPENDITURE OF ONSHORE WIND COMPONENTS, BY TYPE, 2025
  • 5.6 TRADE ANALYSIS
    • 5.6.1 IMPORT SCENARIO (HS CODE 850231)
    • 5.6.2 EXPORT SCENARIO (HS CODE 850231)
  • 5.7 KEY CONFERENCES AND EVENTS, 2026-2027
  • 5.8 TRENDS/DISRUPTIONS IMPACTING CUSTOMER BUSINESS
  • 5.9 INVESTMENT AND FUNDING SCENARIO
  • 5.10 CASE STUDY ANALYSIS
    • 5.10.1 WHITELEE WIND FARM PARTNERS WITH VESTAS TO DEPLOY ADVANCED TURBINES AND TOOLS TO ENHANCE OPERATIONAL EFFICIENCY
    • 5.10.2 BJORNBERGET WIND FARM IN SWEDEN ADOPTS SIEMENS GAMESA'S 5.X PLATFORM TURBINES TO ACHIEVE HIGH ENERGY CAPTURE
    • 5.10.3 ALTA WIND ENERGY CENTER IMPLEMENTS ONSHORE WIND TURBINES TO SUPPORT CALIFORNIA'S CLEAN ENERGY TRANSITION
  • 5.11 IMPACT OF ONGOING GEOPOLITICAL DEVELOPMENTS IN THE MIDDLE EAST- ONSHORE WIND MARKET
  • 5.12 IMPACT OF US TARIFFS - ONSHORE WIND MARKET
    • 5.12.1 INTRODUCTION
    • 5.12.2 KEY TARIFF RATES
    • 5.12.3 PRICE IMPACT ANALYSIS
    • 5.12.4 IMPACT ON COUNTRIES/REGIONS
      • 5.12.4.1 US
      • 5.12.4.2 Europe
      • 5.12.4.3 Asia Pacific
      • 5.12.4.4 South America
      • 5.12.4.5 Middle East & Africa
  • 5.13 IMPACT ON TURBINE RATINGS

6 TECHNOLOGICAL ADVANCEMENTS, AI-DRIVEN IMPACT, PATENTS, INNOVATIONS, AND FUTURE APPLICATIONS

  • 6.1 KEY EMERGING TECHNOLOGIES
    • 6.1.1 DIRECT-DRIVE AND HYBRID DRIVETRAIN SYSTEMS
  • 6.2 COMPLEMENTARY TECHNOLOGIES
    • 6.2.1 SUPERVISORY CONTROL AND DATA ACQUISITION (SCADA)
    • 6.2.2 DIGITAL ASSET MANAGEMENT SYSTEMS (DAM)
  • 6.3 TECHNOLOGY/PRODUCT ROADMAP
  • 6.4 PATENT ANALYSIS
  • 6.5 FUTURE APPLICATIONS
  • 6.6 IMPACT OF AI/GEN AI ON ONSHORE WIND MARKET
    • 6.6.1 TOP USE CASES AND MARKET POTENTIAL
    • 6.6.2 BEST PRACTICES FOLLOWED BY OEMS IN ONSHORE WIND MARKET
    • 6.6.3 CASE STUDIES RELATED TO AI/GEN AI IMPLEMENTATION IN ONSHORE WIND MARKET
    • 6.6.4 INTERCONNECTED ECOSYSTEMS AND IMPACT ON MARKET PLAYERS
    • 6.6.5 CLIENTS' READINESS TO ADOPT AI/GEN AI-INTEGRATED ONSHORE WIND SYSTEMS

7 REGULATORY LANDSCAPE AND SUSTAINABILITY INITIATIVES

  • 7.1 REGIONAL REGULATIONS AND COMPLIANCE
    • 7.1.1 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS
    • 7.1.2 INDUSTRY STANDARDS
  • 7.2 SUSTAINABILITY INITIATIVES
    • 7.2.1 CARBON IMPACT AND ECO-APPLICATIONS OF ONSHORE WIND SYSTEMS
  • 7.3 IMPACT OF REGULATORY POLICIES ON SUSTAINABILITY INITIATIVES
  • 7.4 CERTIFICATIONS, LABELING, AND ECO-STANDARDS

8 CUSTOMER LANDSCAPE AND BUYER BEHAVIOR

  • 8.1 DECISION-MAKING PROCESS
  • 8.2 KEY STAKEHOLDERS INVOLVED IN BUYING PROCESS AND THEIR EVALUATION CRITERIA
    • 8.2.1 KEY STAKEHOLDERS IN BUYING PROCESS
    • 8.2.2 BUYING CRITERIA
  • 8.3 ADOPTION BARRIERS AND INTERNAL CHALLENGES
  • 8.4 MARKET PROFITABILITY

9 ONSHORE WIND MARKET, BY COMPONENT

  • 9.1 INTRODUCTION
  • 9.2 TURBINES
    • 9.2.1 INVESTMENTS IN RENEWABLE ENERGY, CORPORATE SUSTAINABILITY COMMITMENTS, AND DEMAND FOR LOW-CARBON ELECTRICITY GENERATION TO FOSTER SEGMENTAL GROWTH
    • 9.2.2 NACELLES
    • 9.2.3 ROTORS & BLADES
    • 9.2.4 TOWERS
  • 9.3 ELECTRICAL INFRASTRUCTURE
    • 9.3.1 GOVERNMENT POLICIES PROMOTING RENEWABLE ENERGY DEPLOYMENT AND GRID MODERNIZATION TO ACCELERATE SEGMENTAL GROWTH
    • 9.3.2 WIRES & CABLES
    • 9.3.3 SUBSTATIONS
    • 9.3.4 OTHERS

10 ONSHORE WIND MARKET, BY TURBINE RATING

  • 10.1 INTRODUCTION
  • 10.2 BELOW 2 MW
    • 10.2.1 GOVERNMENT INCENTIVES AND RURAL ELECTRIFICATION PROGRAMS TO CONTRIBUTE TO SEGMENTAL GROWTH
  • 10.3 2-3 MW
    • 10.3.1 RENEWABLE ENERGY TARGETS AND COMPETITIVE PROCUREMENT PROGRAMS TO ACCELERATE SEGMENTAL GROWTH
  • 10.4 4-5 MW
    • 10.4.1 DECARBONIZATION INITIATIVES AND SHIFT TOWARD HIGH-PERFORMANCE WIND ASSETS TO FOSTER SEGMENTAL GROWTH
  • 10.5 ABOVE 5 MW
    • 10.5.1 ADVANCES IN MODULAR TOWER CONSTRUCTION AND DIGITAL TWIN TECHNOLOGY TO EXPEDITE SEGMENTAL GROWTH

11 ONSHORE WIND MARKET, BY REGION

  • 11.1 INTRODUCTION
  • 11.2 ASIA PACIFIC
    • 11.2.1 CHINA
      • 11.2.1.1 Strong industrial base, growing electricity demand, and investments in renewable energy to drive market
    • 11.2.2 INDIA
      • 11.2.2.1 Increasing clean energy investments and competitive tariff-based auctions to augment market growth
    • 11.2.3 AUSTRALIA
      • 11.2.3.1 High commitment to decarbonization and electricity sector modernization to expedite market growth
    • 11.2.4 VIETNAM
      • 11.2.4.1 Ambitious renewable energy policies and expanding transmission infrastructure to foster market growth
    • 11.2.5 REST OF ASIA PACIFIC
  • 11.3 NORTH AMERICA
    • 11.3.1 US
      • 11.3.1.1 Increasing investment in energy infrastructure to cater to high electricity demand to drive market
    • 11.3.2 CANADA
      • 11.3.2.1 High commitment to decarbonization and electrification needs to contribute to market growth
  • 11.4 EUROPE
    • 11.4.1 GERMANY
      • 11.4.1.1 Accelerating renewable energy permitting reforms to contribute to market growth
    • 11.4.2 UK
      • 11.4.2.1 Rapid renewable energy transition and net-zero commitments to accelerate market growth
    • 11.4.3 SPAIN
      • 11.4.3.1 High emphasis on repowering aging wind farms to expedite market growth
    • 11.4.4 FRANCE
      • 11.4.4.1 Rising deployment of clean energy and grid modernization targets to foster market growth
    • 11.4.5 ITALY
      • 11.4.5.1 Strong focus on meeting climate and energy security objectives to augment market growth
    • 11.4.6 SWEDEN
      • 11.4.6.1 Growing commitment to industrial decarbonization to contribute to market growth
    • 11.4.7 REST OF EUROPE
  • 11.5 MIDDLE EAST & AFRICA
    • 11.5.1 SAUDI ARABIA
      • 11.5.1.1 Rapid expansion of renewable energy capacity to bolster market growth
    • 11.5.2 SOUTH AFRICA
      • 11.5.2.1 Increasing effort to address electricity shortages and reduce dependence on coal-fired generation to drive market
    • 11.5.3 REST OF MIDDLE EAST & AFRICA
  • 11.6 SOUTH AMERICA
    • 11.6.1 BRAZIL
      • 11.6.1.1 Favorable wind resources and power transmission investments to boost market growth
    • 11.6.2 REST OF SOUTH AMERICA

12 COMPETITIVE LANDSCAPE

  • 12.1 OVERVIEW
  • 12.2 KEY PLAYER COMPETITIVE STRATEGIES/RIGHT TO WIN, 2023-2026
  • 12.3 REVENUE ANALYSIS, 2021-2025
  • 12.4 MARKET SHARE ANALYSIS, 2025
  • 12.5 COMPANY VALUATION AND FINANCIAL METRICS
  • 12.6 PRODUCT COMPARISON
    • 12.6.1 VESTAS (DENMARK)
    • 12.6.2 GOLDWIND SCIENCE & TECHNOLOGY CO., LTD.(CHINA)
    • 12.6.3 MING YANG SMART ENERGY GROUP CO., LTD (CHINA)
    • 12.6.4 SIEMENS ENERGY (GERMANY)
    • 12.6.5 GE VERNOVA (US)
  • 12.7 COMPANY EVALUATION MATRIX: KEY PLAYERS, 2025
    • 12.7.1 STARS
    • 12.7.2 EMERGING LEADERS
    • 12.7.3 PERVASIVE PLAYERS
    • 12.7.4 PARTICIPANTS
    • 12.7.5 COMPANY FOOTPRINT, KEY PLAYERS, 2025
      • 12.7.5.1 Company footprint
      • 12.7.5.2 Region footprint
      • 12.7.5.3 Component footprint
      • 12.7.5.4 Turbine rating footprint
  • 12.8 COMPANY EVALUATION MATRIX: STARTUPS/SMES, 2025
    • 12.8.1 PROGRESSIVE COMPANIES
    • 12.8.2 RESPONSIVE COMPANIES
    • 12.8.3 DYNAMIC COMPANIES
    • 12.8.4 STARTING BLOCKS
    • 12.8.5 COMPETITIVE BENCHMARKING: STARTUPS/SMES, 2025
      • 12.8.5.1 Detailed list of key startups/SMEs
      • 12.8.5.2 Competitive benchmarking of key startups/SMEs
  • 12.9 COMPETITIVE SCENARIO
    • 12.9.1 PRODUCT LAUNCHES
    • 12.9.2 DEALS
    • 12.9.3 EXPANSIONS
    • 12.9.4 OTHER DEVELOPMENTS

13 COMPANY PROFILES

  • 13.1 KEY PLAYERS
    • 13.1.1 VESTAS
      • 13.1.1.1 Business overview
      • 13.1.1.2 Products/Solutions/Services offered
      • 13.1.1.3 Recent developments
        • 13.1.1.3.1 Deals
        • 13.1.1.3.2 Other developments
      • 13.1.1.4 MnM view
        • 13.1.1.4.1 Key strengths/Right to win
        • 13.1.1.4.2 Strategic choices
        • 13.1.1.4.3 Weaknesses/Competitive threats
    • 13.1.2 GOLDWIND SCIENCE & TECHNOLOGY CO., LTD.
      • 13.1.2.1 Business overview
      • 13.1.2.2 Products/Solutions/Services offered
      • 13.1.2.3 Recent developments
        • 13.1.2.3.1 Product launches
        • 13.1.2.3.2 Deals
        • 13.1.2.3.3 Expansions
        • 13.1.2.3.4 Other developments
      • 13.1.2.4 MnM view
        • 13.1.2.4.1 Key strengths/Right to win
        • 13.1.2.4.2 Strategic choices
        • 13.1.2.4.3 Weaknesses/Competitive threats
    • 13.1.3 MING YANG SMART ENERGY GROUP CO., LTD.
      • 13.1.3.1 Business overview
      • 13.1.3.2 Products/Solutions/Services offered
      • 13.1.3.3 Recent developments
        • 13.1.3.3.1 Product launches
        • 13.1.3.3.2 Deals
        • 13.1.3.3.3 Expansions
        • 13.1.3.3.4 Other developments
      • 13.1.3.4 MnM view
        • 13.1.3.4.1 Key strengths/Right to win
        • 13.1.3.4.2 Strategic choices
        • 13.1.3.4.3 Weaknesses/Competitive threats
    • 13.1.4 SIEMENS ENERGY
      • 13.1.4.1 Business overview
      • 13.1.4.2 Products/Solutions/Services offered
      • 13.1.4.3 Recent developments
        • 13.1.4.3.1 Deals
        • 13.1.4.3.2 Other developments
      • 13.1.4.4 MnM view
        • 13.1.4.4.1 Key strengths/Right to win
        • 13.1.4.4.2 Strategic choices
        • 13.1.4.4.3 Weaknesses/Competitive threats
    • 13.1.5 GE VERNOVA
      • 13.1.5.1 Business overview
      • 13.1.5.2 Products/Solutions/Services offered
      • 13.1.5.3 Recent developments
        • 13.1.5.3.1 Deals
        • 13.1.5.3.2 Expansions
        • 13.1.5.3.3 Other developments
      • 13.1.5.4 MnM view
        • 13.1.5.4.1 Key strengths/Right to win
        • 13.1.5.4.2 Strategic choices
        • 13.1.5.4.3 Weaknesses/Competitive threats
    • 13.1.6 ENVISION GROUP
      • 13.1.6.1 Business overview
      • 13.1.6.2 Products/Solutions/Services offered
      • 13.1.6.3 Recent developments
        • 13.1.6.3.1 Deals
    • 13.1.7 WINDEY ENERGY TECHNOLOGY GROUP CO.,LTD.
      • 13.1.7.1 Business overview
      • 13.1.7.2 Products/Solutions/Services offered
    • 13.1.8 DOOSAN CORPORATION
      • 13.1.8.1 Business overview
      • 13.1.8.2 Products/Solutions/Services offered
    • 13.1.9 ABB
      • 13.1.9.1 Business overview
      • 13.1.9.2 Products/Solutions/Services offered
      • 13.1.9.3 Recent developments
        • 13.1.9.3.1 Deals
    • 13.1.10 PRYSMIAN GROUP
      • 13.1.10.1 Business overview
      • 13.1.10.2 Products/Solutions/Services offered
      • 13.1.10.3 Recent developments
        • 13.1.10.3.1 Product launches
    • 13.1.11 NORDEX SE
      • 13.1.11.1 Business overview
      • 13.1.11.2 Products/Solutions/Services offered
    • 13.1.12 SCHNEIDER ELECTRIC
      • 13.1.12.1 Business overview
      • 13.1.12.2 Products/Solutions/Services offered
    • 13.1.13 DONGFANG ELECTRIC WIND POWER CO., LTD.
      • 13.1.13.1 Business overview
      • 13.1.13.2 Products/Solutions/Services offered
    • 13.1.14 SANY RENEWABLE ENERGY CO., LTD.
      • 13.1.14.1 Business overview
      • 13.1.14.2 Products/Solutions/Services offered
    • 13.1.15 SUZLON ENERGY LTD.
      • 13.1.15.1 Business overview
      • 13.1.15.2 Products/Solutions/Services offered
      • 13.1.15.3 Recent developments
        • 13.1.15.3.1 Product launches
        • 13.1.15.3.2 Deals
  • 13.2 OTHER PLAYERS
    • 13.2.1 HITACHI ENERGY LTD
    • 13.2.2 CRRC SHANDONG WIND POWER CO., LTD.
    • 13.2.3 SHANGHAI ELECTRIC POWER CO., LTD
    • 13.2.4 INOX WIND LIMITED
    • 13.2.5 SENVION INDIA PRIVATE LIMITED
    • 13.2.6 ENERCON GLOBAL GMBH
    • 13.2.7 VAYONA ENERGY PVT. LTD.
    • 13.2.8 SINOVEL WIND GROUP CO., LTD.
    • 13.2.9 LEITWIND
    • 13.2.10 EWT

14 RESEARCH METHODOLOGY

  • 14.1 RESEARCH DATA
  • 14.2 SECONDARY AND PRIMARY RESEARCH
    • 14.2.1 SECONDARY DATA
      • 14.2.1.1 List of key secondary sources
      • 14.2.1.2 Key data from secondary sources
    • 14.2.2 PRIMARY DATA
      • 14.2.2.1 List of primary interview participants
      • 14.2.2.2 Key industry insights
      • 14.2.2.3 Breakdown of primary interviews
      • 14.2.2.4 Key data from primary sources
  • 14.3 MARKET SIZE ESTIMATION
    • 14.3.1 BOTTOM-UP APPROACH
    • 14.3.2 TOP-DOWN APPROACH
  • 14.4 MARKET FORECAST APPROACH
    • 14.4.1 DEMAND-SIDE ANALYSIS
      • 14.4.1.1 Demand-side assumptions
      • 14.4.1.2 Demand-side calculations
    • 14.4.2 SUPPLY-SIDE ANALYSIS
      • 14.4.2.1 Supply-side assumptions
      • 14.4.2.2 Supply-side calculations
  • 14.5 FORECAST
  • 14.6 DATA TRIANGULATION
  • 14.7 RESEARCH LIMITATIONS
  • 14.8 RISK ANALYSIS

15 APPENDIX

  • 15.1 DISCUSSION GUIDE
  • 15.2 KNOWLEDGESTORE: MARKETSANDMARKETS' SUBSCRIPTION PORTAL
  • 15.3 CUSTOMIZATION OPTIONS
  • 15.4 RELATED REPORTS
  • 15.5 AUTHOR DETAILS
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