全球離岸風力發電市場:按組件、水深、基礎類型、風機額定功率和地區分類-預測至2035年
市場調查報告書
商品編碼
2092400

全球離岸風力發電市場:按組件、水深、基礎類型、風機額定功率和地區分類-預測至2035年

Offshore Wind Market by Component (Turbines, Substructures, Electrical Infrastructure), Water Depth (Shallow Water, Transitional Water, Deep Water), Foundation Type (Fixed, Floating), Turbine Rating, and Region - Global Forecast to 2035

出版日期: | 出版商: MarketsandMarkets | 英文 275 Pages | 訂單完成後即時交付

價格

預計離岸風力發電市場規模將從 2026 年的 575.1 億美元成長到 2035 年的 2,083.3 億美元,預測期內複合年成長率為 15.4%。

可再生能源發電的快速擴張、對能源安全的日益關注、雄心勃勃的脫碳目標以及對海上可再生能源基礎設施投資的增加,正在顯著推動全球市場對離岸風力發電項目的需求。

調查範圍
調查期 2023-2035
基準年 2025
預測期 2026-2035
計算單位 金額(10億美元)
部分 按組件、水深、基礎類型、渦輪機額定功率、區域
目標區域 北美、亞太地區、歐洲

隨著各國加速向低碳能源系統轉型,離岸風力發電憑藉其高容量利用率、豐富的風能資源以及支持長期能源永續性目標的能力,正成為大規模再生能源發電的重要來源。由於渦輪機設計、基礎工程、海上輸電系統和數位化資產管理解決方案等方面的進步,離岸風力發電技術正日益被應用於公用事業規模的可再生能源專案。

離岸風電市場 - IMG1

最新的離岸風力發電採用超過15兆瓦的大型風機平台、先進的單樁和導管架基礎、浮體式海上風電技術以及高壓直流輸電系統,以提高發電效率和專案經濟效益。這些項目需要先進的工程技術來最佳化發電、降低安裝成本,並確保在惡劣的海上環境下可靠運作。隨著浮體式離岸風力發電、數位孿生、人工智慧驅動的預測維修系統系統、自主巡檢無人機和即時資產性能分析等新一代技術的應用日益廣泛,對先進離岸風電解決方案的需求也在加速成長。開發商和電力公司越來越注重透過數位化和智慧資產管理平台來最大限度地提高能源產量、減少運作、提高資產可靠性並延長專案生命週期。這些創新技術能夠對整個離岸風力發電電場的風扇性能、結構完整性、天氣狀況和維護需求進行高效監控。

“按部件分類,預計在預測期內,渦輪機部分將成為離岸風力發電市場中最大的細分市場。”

預計在預測期內,風力渦輪機仍將佔據離岸風力發電市場最大的佔有率。這主要歸功於公用事業規模可再生能源專案中高容量離岸風力發電渦輪機的日益普及。離岸風力發電渦輪機是離岸風力發電的核心發電組件,佔專案總投資的大部分。開發商和電力公司正在增加對10兆瓦和15兆瓦以上先進渦輪機平台的投資,以最大限度地提高發電量、提升容量利用率並降低平準化電力成本(LCOE)。這些渦輪機採用更大的轉子直徑、先進的葉片材料、直驅發電機技術和智慧控制系統,即使在不斷變化的離岸風況下也能最佳化性能。下一代渦輪機技術的日益普及將使開發商能夠以更少的機組安裝產生更多電力,從而降低基礎工程、電纜鋪設、安裝和維護成本。離岸風力發電渦輪機支援高效的能量轉換,並在最大限度地提高專案經濟效益、運行可靠性和長期資產性能方面發揮關鍵作用。葉片空氣動力學、傳動系統、電力電子技術和數位化監控平台的持續進步,正進一步提升風力渦輪機的效率和運作。歐洲、亞太和北美地區大型離岸風力發電的開發和建設正顯著加速對先進離岸風力發電渦輪機的需求。渦輪機製造商正日益整合數位孿生、人工智慧驅動的預測維修系統、狀態監測技術和即時資產分析,以提升發電效率、減少停機時間,並在整個專案生命週期中最佳化維護策略。

“從渦輪機額定功率來看,預計在預測期內,超過 15 兆瓦的細分市場將在離岸風力發電市場中實現最快的成長。”

在預測期內,受對更高發電量需求、專案經濟效益提升以及平準化電力成本(LCOE)降低的推動,15兆瓦以上的風力發電機組預計將成為離岸風力發電市場成長最快的細分市場。離岸風力發電電開發商和電力公司正擴大採用15兆瓦以上的新一代風力發電機組平台,以最大限度地提高發電量、減少每個項目的離岸風力發電專案越來越依賴超大型風力發電機組來提高容量利用率、提升專案盈利並支援大規模可再生能源部署。這些風力發電機組旨在捕獲更多風力發電、增加年發電量並降低基礎、電纜和安裝相關的輔助設備(BOP)成本。 15兆瓦以上風力渦輪機的部署正加速發展,尤其是在歐洲、中國、台灣、韓國以及新興離岸風力發電市場。在這些地區,政府和開發商正積極推動公用事業規模的項目,以實現更高的效率和更低的生命週期成本。此外,離岸風力發電項目儲備的增加、海上輸電基礎設施投資的加大、政府支持的競標計劃以及雄心勃勃的脫碳目標,都在推動全球15兆瓦以上風力渦輪機的部署。這些新一代渦輪機平台能夠幫助開發商降低專案成本,加速可再生能源的普及,並提升專案的整體競爭力。

“從區域分類來看,預計在預測期內,歐洲將佔據第二大市場佔有率。”

預計在預測期內,歐洲將佔據離岸風力發電市場第二大佔有率,這主要得益於成熟的離岸風力發電產業、雄心勃勃的脫碳目標、有利的法規結構以及對可再生能源基礎設施的持續投資。英國、德國、荷蘭、挪威、丹麥、法國和比利時等國憑藉著長期的能源轉型策略、競爭性競標機制和優惠的政府政策,已成為全球離岸風力發電部署的領導者。該地區擁有完善的離岸風力發電電生態系統,涵蓋開發商、風機製造商、基礎設施供應商、輸電運營商、工程公司和服務供應商,所有這些企業都在持續投資於先進的離岸風力發電技術,以提高專案的效率、可靠性和發電量。

大規模離岸風力發電、15兆瓦以上新一代風力渦輪機平台以及海上輸電基礎設施的擴張,正推動歐洲市場顯著成長。離岸風力發電技術被廣泛用於支援可再生能源發電、能源安全目標以及減少碳排放。歐洲綠色交易、REPowerEU等政府項目以及各國離岸風力發電擴張目標,進一步促進了全部區域的市場成長。對浮體式海上風電技術、海上變電站、高壓直流輸電系統、海底電纜網路以及港口基礎設施現代化改造的投資,為市場參與企業創造了巨大的商機。此外,對綠色氫能生產、海上能源樞紐以及跨境電力互聯的日益關注,也增加了對大規模海上可再生能源專案的需求。

為了收集和檢驗重要的定性和定量信息,並評估未來市場前景,我們對主要行業相關人員、各領域專家、主要市場參與者的高管以及行業顧問進行了詳細訪談。初步訪談的具體情況如下:

西門子能源(德國)、明陽智慧能源集團(中國)、維斯塔斯(丹麥)、金風科技(中國)和遠景能源集團(中國)是離岸風力發電市場的主要參與者。本研究對這些主要參與者進行了詳細的競爭分析,包括公司概況、近期發展和主要市場策略。

調查範圍:

本報告按組件、風機額定功率、水深、基礎類型和地區對全球離岸風力發電市場進行定義、描述和預測,並提供詳細的市場定性和定量分析。報告全面檢驗了關鍵市場促進因素和挑戰,並涵蓋了市場的各個重要方面,包括競爭格局分析、市場動態、市場以金額為準估算以及離岸風力發電市場的未來趨勢。

購買本報告的主要好處

  • 本報告分析了主要促進因素(離岸風力發電離岸風力發電裝置容量增加和可再生能源投資擴大、電力需求上升和脫碳努力)、阻礙因素(高額資本投資和項目開發成本)、機遇(浮體式海上風電技術的興起和新興市場離岸風力發電項目的擴張)以及挑戰(與海上項目開發相關的環境和海洋生態系統問題)。
  • 市場趨勢:盈利市場的全面資訊-本報告分析了各個地區的離岸風力發電市場。
  • 市場多元化:提供離岸風力發電市場的新產品和服務、未開發地區、近期趨勢和新產品發布的全面資訊。
  • 競爭分析:本報告分析了離岸風電市場主要參與者的產品和服務,包括金風科技(中國)、遠景集團(中國)、海洋之風(加拿大)、明陽智慧能源集團(中國)、維斯塔斯(丹麥)、西門子能源(德國)、普睿司曼(義大利)、GE Vernova(美國)、耐吉(法國)、Sif集團(荷蘭)、EEW集團(德國)、施耐德電機(法國)、東方電氣風電(中國)、斗山(韓國)、日立能源(瑞士)、沃旭能源(丹麥)、諾斯蘭電力公司(加拿大)、中車山東能源(中國)、普信離岸風力發電集團(美國)、SSESSE) Renewables(英國)、法國電力公司(法國)、阿克解決方案(挪威)、瓦滕福(瑞典)和挪威國家電力公司(挪威)。
  • 產品創新與發展:產品創新和技術進步在加速離岸風力發電市場成長方面發揮著至關重要的作用。這尤其體現在對高功率渦輪機的需求不斷成長、發電效率的提高以及平準化電力成本(LCOE)的降低。產業相關人員不斷採用新一代離岸風力發電技術,例如功率超過15兆瓦的渦輪機、先進的複合材料葉片、更大的轉子直徑和增強型傳動系統,以最大限度地提高發電量並改善專案經濟效益。浮體式海上風電技術的日益普及進一步推動了創新基礎解決方案的發展,例如半潛式平台、立柱式浮標結構和張力腳平臺,這些方案使得在無法使用固定基礎的深海域環境中安裝風電場成為可能。

在先進的離岸風力發電專案中,整合數位孿生平台、人工智慧驅動的預測維修系統、狀態監測感測器和即時效能分析已成為日益成長的趨勢。這有助於提高資產可靠性、最佳化運作效率並降低整個專案生命週期的維護成本。這些解決方案廣泛應用於公用事業規模的離岸風力發電電場、混合可再生能源專案、海上能源樞紐和綠色氫能生產設施,在這些專案中,最大限度地提高能源產量和最大限度地減少停機時間至關重要。

目錄

第1章:引言

第2章執行摘要

第3章重要考察

第4章 市場概覽

  • 市場動態
    • 促進因素
    • 抑制因子
    • 機會
    • 任務
  • 未滿足的需求和未開發的領域
  • 相互關聯的市場與跨產業機遇
  • 一級/二級/三級公司的策略性舉措

第5章 產業趨勢

  • 波特五力分析
  • 宏觀經濟展望
  • 價值鏈分析
  • 生態系分析
  • 價格分析
  • 貿易分析
  • 2026-2027 年主要會議和活動
  • 影響客戶業務的趨勢/顛覆性因素
  • 投資和資金籌措場景
  • 案例研究分析
  • 美國關稅對離岸風力發電市場的影響
  • 對部件的影響
  • 當前地緣政治局勢對中東風電市場的影響。

第6章:技術進步、人工智慧的影響、專利、創新與未來應用

  • 主要技術
  • 互補技術
  • 技術/產品藍圖
  • 專利分析
  • 未來應用
  • 人工智慧/生成式人工智慧對離岸風力發電市場的影響
  • 成功案例和實際應用

第7章:監理情勢與永續性舉措

  • 當地法規和合規性
  • 對永續性的承諾
  • 監理政策對永續性舉措的影響
  • 認證、標籤檢視和環境標準

第8章:顧客趨勢與購買行為

  • 決策流程
  • 採購過程中的關鍵相關人員及其評估標準
  • 實施障礙和內部挑戰
  • 市場盈利

第9章:離岸風力發電市場(按組成部分)

  • 渦輪
  • 起落架
  • 電力基礎設施

第10章:離岸風力發電市場(以水深分類)

  • 淺水區
  • 過渡水
  • 深海

第11章:離岸風力發電市場(依基礎類型分類)

  • 固定類型
  • 浮點型

第12章:離岸風力發電市場(以渦輪機額定功率分類)

  • 小於5兆瓦
  • 5~10MW
  • 11~15MW
  • 15兆瓦或以上

第13章:離岸風力發電市場(按地區分類)

  • 亞太地區
    • 中國
    • 台灣
    • 日本
    • 韓國
    • 其他
  • 歐洲
    • 德國
    • 英國
    • 丹麥
    • 法國
    • 波蘭
    • 荷蘭
    • 其他
  • 北美洲
    • 美國

第14章 競爭格局

  • 概述
  • 2021-2026年主要參與企業的競爭策略/優勢
  • 2025年市佔率分析
  • 2021-2025年收入分析
  • 產品對比
  • 企業估值矩陣:主要公司,2025 年
  • 公司估值矩陣:新創企業/中小企業,2025 年
  • 企業估值和財務指標
  • 競爭格局

第15章:公司簡介

  • 主要參與企業
    • SIEMENS ENERGY
    • MING YANG SMART ENERGY GROUP CO., LTD.
    • VESTAS
    • GOLDWIND
    • ENVISION GROUP
    • PRYSMIAN
    • GE VERNOVA
    • NEXANS
    • SIF GROUP
    • SCHNEIDER ELECTRIC
    • DONGFANG ELECTRIC WIND POWER CO., LTD.
    • DOOSAN CORPORATION
    • HITACHI ENERGY LTD
    • ORSTED
    • NORTHLAND POWER INC.
    • SHANGHAI SMEC ENTERPRISE CO., LTD.
    • AKER SOLUTIONS
    • EQUINOR ASA
    • OCEANWINDS
  • 其他公司
    • EEW GROUP
    • CRRC SHANDONG WIND POWER CO., LTD.
    • PRINCIPLE POWER
    • SSE PLC
    • EDF
    • VATTENFALL

第16章調查方法

第17章附錄

Product Code: EP 5275

The offshore wind market is estimated to grow from USD 57.51 billion in 2026 to USD 208.33 billion by 2035, at a CAGR of 15.4% during the forecast period. The rapid expansion of renewable energy generation, growing energy security concerns, ambitious decarbonization targets, and increasing investments in offshore renewable infrastructure are significantly driving demand for offshore wind projects across global markets.

Scope of the Report
Years Considered for the Study2023-2035
Base Year2025
Forecast Period2026-2035
Units ConsideredValue (USD BN)
Segmentsby Component, Water Depth, Foundation Type, Turbine Rating
Regions coveredNorth America, Asia Pacific, Europe

As countries accelerate the transition toward low-carbon energy systems, offshore wind is becoming a critical source of large-scale renewable electricity generation due to its high capacity factors, abundant wind resources, and ability to support long-term energy sustainability goals. Offshore wind technologies are increasingly being deployed across utility-scale renewable energy projects, supported by advancements in turbine design, foundation engineering, offshore transmission systems, and digital asset management solutions.

Offshore Wind Market - IMG1

Modern offshore wind farms are utilizing larger turbine platforms exceeding 15 MW, advanced monopile and jacket foundations, floating offshore wind technologies, and high-voltage direct current transmission systems to improve energy production efficiency and project economics. These projects require sophisticated engineering capabilities to optimize energy generation, reduce installation costs, and ensure reliable operation under demanding offshore environmental conditions. The growing adoption of next-generation technologies, including floating foundations, digital twins, AI-enabled predictive maintenance systems, autonomous inspection drones, and real-time asset performance analytics, accelerates the demand for advanced offshore wind solutions. Developers and utilities are increasingly focused on maximizing energy yield, reducing operational downtime, improving asset reliability, and extending project lifecycles through digitalization and intelligent asset management platforms. These innovations enable efficient monitoring of turbine performance, structural integrity, weather conditions, and maintenance requirements across offshore wind farms.

"By component, the turbines segment is expected to be the largest type segment in the offshore wind market during the forecast period."

The turbines segment is expected to account for the largest share of the offshore wind market during the forecast period, primarily driven by the increasing deployment of high-capacity offshore wind turbines across utility-scale renewable energy projects. Offshore wind turbines represent the core power-generating component of offshore wind farms and account for a significant portion of total project capital expenditure. Developers and utilities are increasingly investing in advanced turbine platforms exceeding 10 MW and 15 MW to maximize energy production, improve capacity factors, and reduce the levelized cost of electricity. These turbines incorporate larger rotor diameters, advanced blade materials, direct-drive generator technologies, and intelligent control systems to optimize performance under varying offshore wind conditions. The growing adoption of next-generation turbine technologies is enabling developers to generate more electricity with fewer installations, thereby reducing foundation, cabling, installation, and maintenance costs. Offshore wind turbines support efficient energy conversion and play a critical role in maximizing project economics, operational reliability, and long-term asset performance. Continuous advancements in blade aerodynamics, drivetrain systems, power electronics, and digital monitoring platforms are further enhancing turbine efficiency and operational lifespan. The increasing development of large-scale offshore wind farms across Europe, Asia Pacific, and North America is significantly accelerating demand for advanced offshore turbines. Turbine manufacturers are increasingly integrating digital twins, AI-enabled predictive maintenance systems, condition monitoring technologies, and real-time asset analytics to improve energy yield, reduce downtime, and optimize maintenance strategies throughout the project lifecycle.

"By turbine rating, the above 15 MW segment is projected to register the fastest growth in the offshore wind market during the forecast period."

The above 15 MW segment is expected to witness the fastest growth in the offshore wind market during the forecast period, driven by increasing demand for higher energy generation, improved project economics, and lower levelized cost of electricity. Offshore wind developers and utilities are increasingly adopting next-generation turbine platforms exceeding 15 MW to maximize energy output, reduce the number of turbines required per project, and optimize installation and maintenance costs. Leading turbine manufacturers are investing heavily in developing larger rotor diameters, advanced blade technologies, and high-capacity generators to deliver superior performance in offshore environments. Modern offshore wind projects increasingly rely on ultra-large turbines to improve capacity factors, enhance project profitability, and support large-scale renewable energy deployment. These turbines are designed to capture more wind energy, increase annual energy production, and reduce balance-of-plant costs associated with foundations, cabling, and installation. The deployment of turbines above 15 MW is particularly gaining momentum across Europe, China, Taiwan, South Korea, and emerging offshore wind markets where governments and developers are pursuing utility-scale projects with greater efficiency and lower lifecycle costs. Furthermore, expanding offshore wind project pipelines, increasing investments in offshore transmission infrastructure, supportive government auction programs, and ambitious decarbonization targets are driving the adoption of turbines above 15 MW globally. These next-generation turbine platforms enable developers to reduce project costs, accelerate renewable energy deployment, and improve overall project competitiveness.

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

Europe is expected to account for the second-largest share of the offshore wind market during the forecast period, driven by its mature offshore wind industry, ambitious decarbonization targets, supportive regulatory frameworks, and continuous investments in renewable energy infrastructure. Countries such as the UK, Germany, the Netherlands, Norway, Denmark, France, and Belgium have established themselves as global leaders in offshore wind deployment, supported by long-term energy transition strategies, competitive auction mechanisms, and favorable government policies. The region has a well-developed ecosystem of offshore wind developers, turbine manufacturers, foundation suppliers, transmission operators, engineering firms, and service providers that continuously invest in advanced offshore wind technologies to improve project efficiency, reliability, and energy generation.

The increasing deployment of utility-scale offshore wind farms, next-generation turbine platforms exceeding 15 MW, and offshore transmission infrastructure is significantly accelerating market growth across Europe. Offshore wind technologies are widely used to support renewable electricity generation, energy security objectives, and carbon emissions reduction initiatives. Government programs such as the European Green Deal, REPowerEU, and national offshore wind expansion targets are further contributing to market growth across the region. Investments in floating offshore wind technologies, offshore substations, HVDC transmission systems, subsea cable networks, and port infrastructure modernization are creating substantial opportunities for market participants. In addition, the growing focus on green hydrogen production, offshore energy hubs, and cross-border electricity interconnections is increasing demand for large-scale offshore renewable energy projects.

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 - 51%, Europe - 39%, and North America - 10%

Notes: The tiers of the companies are defined based on their total revenues 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 Envision Group (China) are some of the major players in the offshore 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 offshore wind market by component, turbine rating, water depth, foundation type, 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 estimates in terms of value, and future trends in the offshore wind market.

Key Benefits of Buying the Report

  • It provides an analysis of key drivers (Increasing offshore wind capacity additions and renewable energy investments, Growing electricity demand and decarbonization initiatives), restraints (High capital expenditure and project development costs), opportunities (Emergence of floating offshore wind technology, Expansion of offshore wind projects in emerging markets), challenges (Environmental and marine ecosystem concerns associated with offshore project development) influencing the growth of the offshore wind market.
  • Market Development: Comprehensive information about lucrative markets - the report analyzes the offshore wind market across varied regions.
  • Market Diversification: Exhaustive information about new products and services, untapped geographies, recent developments, and product launches in the offshore wind market.
  • Competitive Assessment: In-depth assessment of market shares, growth strategies, and service offerings of leading players like Goldwind (China), Envision Group (China), Ocean Winds (Canada), Ming Yang Smart Energy Group Co., Ltd. (China), Vestas (Denmark), Siemens Energy (Germany), Prysmian (Italy), GE Vernova (US), Nexans (France), Sif Group (Netherlands), EEW Group (Germany), Schneider Electric (France), Dongfang Electric Wind Power Co., Ltd. (China), Doosan (South Korea), Hitachi Energy (Switzerland), Orsted (Denmark), Northland Power Inc. (Canada), CRRC Shandong Power Co., Ltd. (China), Principle Power (US), Shanghai Electric Wind Power Group (China), SSE Renewables (UK), EDF (France), Aker Solutions (Norway), Vattenfall (Sweden), Equinor ASA (Norway) among others, in the offshore wind market.
  • Product Innovation/Development: Product innovation and technological advancement are playing a major role in accelerating the growth of the offshore wind market, particularly with the increasing demand for higher-capacity turbines, improved energy generation efficiency, and reduced levelized cost of electricity. Industry participants are continuously introducing next-generation offshore wind technologies, including turbines exceeding 15 MW, advanced composite blade materials, larger rotor diameters, and enhanced drivetrain systems to maximize power output and improve project economics. The growing adoption of floating offshore wind technologies is further driving the development of innovative foundation solutions such as semi-submersible platforms, spar-buoy structures, and tension-leg platforms that enable wind farm deployment in deep-water environments where fixed-bottom foundations are not feasible.

Advanced offshore wind projects are increasingly integrating digital twin platforms, AI-enabled predictive maintenance systems, condition monitoring sensors, and real-time performance analytics to improve asset reliability, optimize operational efficiency, and reduce maintenance costs throughout the project lifecycle. These solutions are finding widespread applications across utility-scale offshore wind farms, hybrid renewable energy projects, offshore energy hubs, and green hydrogen production facilities, where maximizing energy yield and minimizing downtime are critical.

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
  • 1.7 SUMMARY OF CHANGES

2 EXECUTIVE SUMMARY

  • 2.1 MARKET HIGHLIGHTS AND KEY INSIGHTS
  • 2.2 KEY MARKET PARTICIPANTS: MAPPING OF STRATEGIC DEVELOPMENTS
  • 2.3 DISRUPTIVE TRENDS IN OFFSHORE 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 OFFSHORE WIND MARKET
  • 3.2 OFFSHORE WIND MARKET, BY COMPONENT AND REGION
  • 3.3 OFFSHORE WIND MARKET, BY TURBINE RATING
  • 3.4 OFFSHORE WIND MARKET, BY COMPONENT
  • 3.5 OFFSHORE WIND MARKET, BY FOUNDATION TYPE
  • 3.6 OFFSHORE WIND MARKET, BY WATER DEPTH
  • 3.7 OFFSHORE WIND MARKET, BY COUNTRY

4 MARKET OVERVIEW

  • 4.1 INTRODUCTION
  • 4.2 MARKET DYNAMICS
    • 4.2.1 DRIVERS
      • 4.2.1.1 Increasing implementation of renewable energy policies to support decarbonization
      • 4.2.1.2 Growing electricity demand amid rapid urbanization and industrial expansion
    • 4.2.2 RESTRAINTS
      • 4.2.2.1 High capital expenditure and project development costs
    • 4.2.3 OPPORTUNITIES
      • 4.2.3.1 Emergence of floating offshore wind technology
      • 4.2.3.2 High emphasis on diversifying energy sources and strengthening energy security
    • 4.2.4 CHALLENGES
      • 4.2.4.1 Environmental and marine ecosystem concerns in offshore project development
  • 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 THREAT OF SUBSTITUTES
    • 5.1.3 BARGAINING POWER OF SUPPLIERS
    • 5.1.4 BARGAINING POWER OF BUYERS
    • 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 OFFSHORE 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 ORSTED AND SIEMENS GAMESA DEPLOY HORNSEA 2 USING HIGH-CAPACITY TURBINES TO IMPROVE RENEWABLE ENERGY GENERATION
    • 5.10.2 EQUINOR DEPLOYS HYWIND SCOTLAND TO COMMERCIALIZE FLOATING OFFSHORE WIND
    • 5.10.3 DOGGER BANK OFFSHORE WIND FARM UTILIZES GE VERNOVA'S HALIADE-X TURBINES TO GENERATE LARGE-SCALE CLEAN ENERGY
  • 5.11 IMPACT OF US TARIFFS - OFFSHORE WIND MARKET
    • 5.11.1 INTRODUCTION
    • 5.11.2 KEY TARIFF RATES
    • 5.11.3 PRICE IMPACT ANALYSIS
    • 5.11.4 IMPACT ON COUNTRIES/REGIONS
      • 5.11.4.1 US
      • 5.11.4.2 Europe
      • 5.11.4.3 Asia Pacific
  • 5.12 IMPACT ON COMPONENTS
  • 5.13 IMPACT OF ONGOING GEOPOLITICAL DEVELOPMENTS ON MIDDLE EAST OFFSHORE WIND MARKET

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

  • 6.1 KEY TECHNOLOGIES
    • 6.1.1 LARGE-CAPACITY OFFSHORE WIND TURBINES
    • 6.1.2 FLOATING OFFSHORE WIND TECHNOLOGY
  • 6.2 COMPLEMENTARY TECHNOLOGIES
    • 6.2.1 ADVANCED CONDITION MONITORING SYSTEMS
  • 6.3 TECHNOLOGY/PRODUCT ROADMAP
    • 6.3.1 SHORT-TERM (2025-2027) | FOUNDATION & EARLY COMMERCIALIZATION
    • 6.3.2 MID-TERM (2027-2030) | EXPANSION & STANDARDIZATION
    • 6.3.3 LONG-TERM (2030+) | MASS COMMERCIALIZATION & DISRUPTION
  • 6.4 PATENT ANALYSIS
  • 6.5 FUTURE APPLICATIONS
  • 6.6 IMPACT OF AI/GEN AI ON OFFSHORE WIND MARKET
    • 6.6.1 TOP USE CASES AND MARKET POTENTIAL
    • 6.6.2 BEST PRACTICES FOLLOWED BY OEMS IN OFFSHORE WIND MARKET
    • 6.6.3 CASE STUDIES RELATED TO AI/GEN AI IMPLEMENTATION IN OFFSHORE WIND MARKET
    • 6.6.4 INTERCONNECTED ECOSYSTEM AND IMPACT ON MARKET PLAYERS
    • 6.6.5 CLIENTS' READINESS TO ADOPT AI/GEN AI-INTEGRATED OFFSHORE WIND SOLUTIONS
  • 6.7 SUCCESS STORIES AND REAL-WORLD APPLICATIONS
    • 6.7.1 SIEMENS GAMESA: AI-ENABLED DIGITAL TWIN FOR OFFSHORE TURBINES
    • 6.7.2 GE VERNOVA: AI-BASED ASSET PERFORMANCE MANAGEMENT
    • 6.7.3 VESTAS: AI-DRIVEN OFFSHORE WIND FARM OPTIMIZATION

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 OFFSHORE WIND SOLUTIONS
  • 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
    • 8.4.1 REVENUE POTENTIAL
    • 8.4.2 COST DYNAMICS

9 OFFSHORE WIND MARKET, BY COMPONENT

  • 9.1 INTRODUCTION
  • 9.2 TURBINES
  • 9.3 SUBSTRUCTURES
  • 9.4 ELECTRICAL INFRASTRUCTURE

10 OFFSHORE WIND MARKET, BY WATER DEPTH

  • 10.1 INTRODUCTION
  • 10.2 SHALLOW WATER
    • 10.2.1 FAVORABLE SEABED CONDITIONS AND RELATIVELY LOWER ENGINEERING COMPLEXITY TO ACCELERATE SEGMENTAL GROWTH
  • 10.3 TRANSITIONAL WATER
    • 10.3.1 EMPHASIS ON MAXIMIZING ENERGY OUTPUT AND IMPROVING PROJECT ECONOMICS TO BOLSTER SEGMENTAL GROWTH
  • 10.4 DEEP WATER
    • 10.4.1 HIGH ENERGY GENERATION POTENTIAL AND IMPROVED CAPACITY TO FACILITATE SEGMENTAL GROWTH

11 OFFSHORE WIND MARKET, BY FOUNDATION TYPE

  • 11.1 INTRODUCTION
  • 11.2 FIXED
    • 11.2.1 PROVEN RELIABILITY, TECHNOLOGICAL MATURITY, AND WIDESPREAD COMMERCIAL ADOPTION TO FOSTER SEGMENTAL GROWTH
  • 11.3 FLOATING
    • 11.3.1 INVESTMENTS IN DEEP-WATER OFFSHORE WIND PROJECTS TO CONTRIBUTE TO SEGMENTAL GROWTH

12 OFFSHORE WIND MARKET, BY TURBINE RATING

  • 12.1 INTRODUCTION
  • 12.2 BELOW 5 MW
    • 12.2.1 CONTINUED OPERATION OF LEGACY OFFSHORE WIND FARMS TO SUPPORT SEGMENTAL GROWTH
  • 12.3 5-10 MW
    • 12.3.1 MATURE SUPPLY CHAINS, STANDARDIZED INSTALLATION PRACTICES, AND EXTENSIVE OPERATIONAL EXPERTISE TO FUEL SEGMENTAL GROWTH
  • 12.4 11-15 MW
    • 12.4.1 ABILITY TO MAXIMIZE ENERGY GENERATION AND REDUCE TURBINE REQUIREMENTS TO BOLSTER SEGMENTAL GROWTH
  • 12.5 ABOVE 15 MW
    • 12.5.1 INCORPORATION OF CUTTING-EDGE TECHNOLOGIES TO AUGMENT SEGMENTAL GROWTH

13 OFFSHORE WIND MARKET, BY REGION

  • 13.1 INTRODUCTION
  • 13.2 ASIA PACIFIC
    • 13.2.1 CHINA
      • 13.2.1.1 Substantial investments in transmission infrastructure and renewable energy targets to fuel market growth
    • 13.2.2 TAIWAN
      • 13.2.2.1 High commitment to energy diversification and favorable offshore wind resource to expedite market growth
    • 13.2.3 JAPAN
      • 13.2.3.1 Ambitious carbon neutrality goals and growing electricity demand to bolster market growth
    • 13.2.4 SOUTH KOREA
      • 13.2.4.1 Government support for renewable energy deployment to accelerate market growth
    • 13.2.5 REST OF ASIA PACIFIC
  • 13.3 EUROPE
    • 13.3.1 GERMANY
      • 13.3.1.1 Increasing investment in domestic manufacturing and port infrastructure to boost market growth
    • 13.3.2 UK
      • 13.3.2.1 Strong policy framework and abundant wind resources to contribute to market growth
    • 13.3.3 DENMARK
      • 13.3.3.1 Government-led initiatives to achieve carbon neutrality to support market growth
    • 13.3.4 FRANCE
      • 13.3.4.1 Accelerating renewable energy deployment and investment in floating wind projects to bolster market growth
    • 13.3.5 POLAND
      • 13.3.5.1 Rising emphasis on energy diversification, decarbonization, and reduced dependence on fossil fuels to drive market
    • 13.3.6 NETHERLANDS
      • 13.3.6.1 Ambitious climate and energy transition objectives to expedite market growth
    • 13.3.7 REST OF EUROPE
  • 13.4 NORTH AMERICA
    • 13.4.1 US
      • 13.4.1.1 Increasing investment in clean energy infrastructure and favorable federal policies to expedite market growth

14 COMPETITIVE LANDSCAPE

  • 14.1 OVERVIEW
  • 14.2 KEY PLAYER COMPETITIVE STRATEGIES/ RIGHT TO WIN, 2021-2026
  • 14.3 MARKET SHARE ANALYSIS, 2025
  • 14.4 REVENUE ANALYSIS, 2021-2025
  • 14.5 PRODUCT COMPARISON
    • 14.5.1 SIEMENS ENERGY (GERMANY)
    • 14.5.2 MING YANG SMART ENERGY GROUP CO., LTD. (CHINA)
    • 14.5.3 VESTAS (DENMARK)
    • 14.5.4 GOLDWIND (CHINA)
    • 14.5.5 ENVISION GROUP (CHINA)
  • 14.6 COMPANY EVALUATION MATRIX: KEY PLAYERS, 2025
    • 14.6.1 STARS
    • 14.6.2 EMERGING LEADERS
    • 14.6.3 PERVASIVE PLAYERS
    • 14.6.4 PARTICIPANTS
    • 14.6.5 COMPANY FOOTPRINT: KEY PLAYERS, 2025
      • 14.6.5.1 Company footprint
      • 14.6.5.2 Region footprint
      • 14.6.5.3 Component footprint
      • 14.6.5.4 Water depth footprint
      • 14.6.5.5 Turbine rating footprint
  • 14.7 COMPANY EVALUATION MATRIX: STARTUPS/SMES, 2025
    • 14.7.1 PROGRESSIVE COMPANIES
    • 14.7.2 RESPONSIVE COMPANIES
    • 14.7.3 DYNAMIC COMPANIES
    • 14.7.4 STARTING BLOCKS
    • 14.7.5 COMPETITIVE BENCHMARKING: STARTUPS/SMES, 2025
      • 14.7.5.1 Detailed list of key startups/SMEs
      • 14.7.5.2 Competitive benchmarking of key startups/SMEs
  • 14.8 COMPANY VALUATION AND FINANCIAL METRICS
  • 14.9 COMPETITIVE SCENARIO
    • 14.9.1 PRODUCT LAUNCHES
    • 14.9.2 DEALS
    • 14.9.3 EXPANSIONS
    • 14.9.4 OTHER DEVELOPMENTS

15 COMPANY PROFILES

  • 15.1 KEY PLAYERS
    • 15.1.1 SIEMENS ENERGY
      • 15.1.1.1 Business overview
      • 15.1.1.2 Products/Solutions/Services offered
      • 15.1.1.3 Recent developments
        • 15.1.1.3.1 Deals
        • 15.1.1.3.2 Other developments
      • 15.1.1.4 MnM view
        • 15.1.1.4.1 Key strengths/Right to win
        • 15.1.1.4.2 Strategic choices
        • 15.1.1.4.3 Weaknesses/Competitive threats
    • 15.1.2 MING YANG SMART ENERGY GROUP CO., LTD.
      • 15.1.2.1 Business overview
      • 15.1.2.2 Products/Solutions/Services offered
      • 15.1.2.3 Recent developments
        • 15.1.2.3.1 Product launches
        • 15.1.2.3.2 Deals
        • 15.1.2.3.3 Expansions
      • 15.1.2.4 MnM view
        • 15.1.2.4.1 Key strengths/Right to win
        • 15.1.2.4.2 Strategic choices
        • 15.1.2.4.3 Weaknesses/Competitive threats
    • 15.1.3 VESTAS
      • 15.1.3.1 Business overview
      • 15.1.3.2 Products/Solutions/Services offered
      • 15.1.3.3 Recent developments
        • 15.1.3.3.1 Deals
        • 15.1.3.3.2 Other developments
      • 15.1.3.4 MnM view
        • 15.1.3.4.1 Key strengths/Right to win
        • 15.1.3.4.2 Strategic choices
        • 15.1.3.4.3 Weaknesses/Competitive threats
    • 15.1.4 GOLDWIND
      • 15.1.4.1 Business overview
      • 15.1.4.2 Products/Solutions/Services offered
      • 15.1.4.3 Recent developments
        • 15.1.4.3.1 Product launches
        • 15.1.4.3.2 Deals
        • 15.1.4.3.3 Expansions
      • 15.1.4.4 MnM view
        • 15.1.4.4.1 Key strengths/Right to win
        • 15.1.4.4.2 Strategic choices
        • 15.1.4.4.3 Weaknesses/Competitive threats
    • 15.1.5 ENVISION GROUP
      • 15.1.5.1 Business overview
      • 15.1.5.2 Products/Solutions/Services offered
      • 15.1.5.3 Recent developments
        • 15.1.5.3.1 Product launches
        • 15.1.5.3.2 Deals
        • 15.1.5.3.3 Expansions
        • 15.1.5.3.4 Other developments
      • 15.1.5.4 MnM view
        • 15.1.5.4.1 Key strengths/Right to win
        • 15.1.5.4.2 Strategic choices
        • 15.1.5.4.3 Weaknesses/Competitive threats
    • 15.1.6 PRYSMIAN
      • 15.1.6.1 Business overview
      • 15.1.6.2 Products/Solutions/Services offered
    • 15.1.7 GE VERNOVA
      • 15.1.7.1 Business overview
      • 15.1.7.2 Products/Solutions/Services offered
      • 15.1.7.3 Recent developments
        • 15.1.7.3.1 Deals
        • 15.1.7.3.2 Expansions
    • 15.1.8 NEXANS
      • 15.1.8.1 Business overview
      • 15.1.8.2 Products/Solutions/Services offered
    • 15.1.9 SIF GROUP
      • 15.1.9.1 Business overview
      • 15.1.9.2 Products/Solutions/Services offered
      • 15.1.9.3 Recent developments
        • 15.1.9.3.1 Product launches
        • 15.1.9.3.2 Expansions
        • 15.1.9.3.3 Other developments
    • 15.1.10 SCHNEIDER ELECTRIC
      • 15.1.10.1 Business overview
      • 15.1.10.2 Products/Solutions/Services offered
    • 15.1.11 DONGFANG ELECTRIC WIND POWER CO., LTD.
      • 15.1.11.1 Business overview
      • 15.1.11.2 Products/Solutions/Services offered
      • 15.1.11.3 Recent developments
        • 15.1.11.3.1 Product launches
        • 15.1.11.3.2 Expansions
    • 15.1.12 DOOSAN CORPORATION
      • 15.1.12.1 Business overview
      • 15.1.12.2 Products/Solutions/Services offered
      • 15.1.12.3 Recent developments
        • 15.1.12.3.1 Deals
    • 15.1.13 HITACHI ENERGY LTD
      • 15.1.13.1 Business overview
      • 15.1.13.2 Products/Solutions/Services offered
      • 15.1.13.3 Recent developments
        • 15.1.13.3.1 Deals
        • 15.1.13.3.2 Other developments
    • 15.1.14 ORSTED
      • 15.1.14.1 Business overview
      • 15.1.14.2 Products/Solutions/Services offered
      • 15.1.14.3 Recent developments
        • 15.1.14.3.1 Deals
    • 15.1.15 NORTHLAND POWER INC.
      • 15.1.15.1 Business overview
      • 15.1.15.2 Products/Solutions/Services offered
      • 15.1.15.3 Recent developments
        • 15.1.15.3.1 Developments
    • 15.1.16 SHANGHAI SMEC ENTERPRISE CO., LTD.
      • 15.1.16.1 Business overview
      • 15.1.16.2 Products/Solutions/Services offered
    • 15.1.17 AKER SOLUTIONS
      • 15.1.17.1 Business overview
      • 15.1.17.2 Products/Solutions/Services offered
      • 15.1.17.3 Recent developments
        • 15.1.17.3.1 Product launches
        • 15.1.17.3.2 Other developments
    • 15.1.18 EQUINOR ASA
      • 15.1.18.1 Business overview
      • 15.1.18.2 Products/Solutions/Services offered
      • 15.1.18.3 Recent developments
        • 15.1.18.3.1 Deals
    • 15.1.19 OCEANWINDS
      • 15.1.19.1 Business overview
      • 15.1.19.2 Products/Solutions/Services offered
      • 15.1.19.3 Recent developments
        • 15.1.19.3.1 Deals
        • 15.1.19.3.2 Other developments
  • 15.2 OTHER PLAYERS
    • 15.2.1 EEW GROUP
    • 15.2.2 CRRC SHANDONG WIND POWER CO., LTD.
    • 15.2.3 PRINCIPLE POWER
    • 15.2.4 SSE PLC
    • 15.2.5 EDF
    • 15.2.6 VATTENFALL

16 RESEARCH METHODOLOGY

  • 16.1 RESEARCH DATA
  • 16.2 SECONDARY AND PRIMARY RESEARCH
    • 16.2.1 SECONDARY DATA
      • 16.2.1.1 List of key secondary sources
      • 16.2.1.2 Key data from secondary sources
    • 16.2.2 PRIMARY DATA
      • 16.2.2.1 List of primary interview participants
      • 16.2.2.2 Key industry insights
      • 16.2.2.3 Breakdown of primaries
      • 16.2.2.4 Key data from primary sources
  • 16.3 MARKET SIZE ESTIMATION
    • 16.3.1 BOTTOM-UP APPROACH
    • 16.3.2 TOP-DOWN APPROACH
  • 16.4 MARKET FORECAST APPROACH
    • 16.4.1 DEMAND SIDE
      • 16.4.1.1 Demand-side assumptions
      • 16.4.1.2 Demand-side calculations
    • 16.4.2 SUPPLY SIDE
      • 16.4.2.1 Supply-side assumptions
      • 16.4.2.2 Supply-side calculations
  • 16.5 FORECAST
  • 16.6 DATA TRIANGULATION
  • 16.7 RESEARCH LIMITATIONS
  • 16.8 RISK ANALYSIS

17 APPENDIX

  • 17.1 DISCUSSION GUIDE
  • 17.2 KNOWLEDGESTORE: MARKETSANDMARKETS' SUBSCRIPTION PORTAL
  • 17.3 CUSTOMIZATION OPTIONS
  • 17.4 RELATED REPORTS
  • 17.5 AUTHOR DETAILS

List of Tables

  • TABLE 1 OFFSHORE WIND MARKET: INCLUSIONS AND EXCLUSIONS
  • TABLE 2 OFFSHORE WIND MARKET: SUMMARY OF CHANGES
  • TABLE 3 INTERCONNECTED MARKETS
  • TABLE 4 STRATEGIC FOCUS OF TIER-1/2/3 PLAYERS
  • TABLE 5 IMPACT OF PORTER'S FIVE FORCES
  • TABLE 6 GDP PERCENTAGE CHANGE, BY KEY COUNTRY, 2021-2029
  • TABLE 7 ROLES OF COMPANIES IN OFFSHORE WIND ECOSYSTEM
  • TABLE 8 AVERAGE CAPEX OF OFFSHORE WIND COMPONENTS, BY TYPE, 2025 (USD MILLION/MW)
  • TABLE 9 IMPORT DATA FOR HS CODE 850231-COMPLIANT PRODUCTS, BY COUNTRY, 2021-2025 (USD THOUSAND)
  • TABLE 10 EXPORT DATA FOR HS CODE 850231-COMPLIANT PRODUCTS, BY COUNTRY, 2021-2025 (USD THOUSAND)
  • TABLE 11 LIST OF KEY CONFERENCES AND EVENTS, 2026-2027
  • TABLE 12 ORSTED AND SIEMENS GAMESA DEPLOY HORNSEA 2 TO IMPROVE OFFSHORE WIND GENERATION EFFICIENCY
  • TABLE 13 EQUINOR DEVELOPS HYWIND SCOTLAND TO COMMERCIALIZE FLOATING OFFSHORE WIND
  • TABLE 14 DOGGER BANK OFFSHORE WIND FARM DEPLOYS GE VERNOVA'S HALIADE-X TURBINES TO MAXIMIZE ENERGY OUTPUT
  • TABLE 15 US-ADJUSTED RECIPROCAL TARIFF RATES
  • TABLE 16 EXPECTED CHANGE IN PRICES AND IMPACT ON OFFSHORE WIND COMPONENTS DUE TO TARIFFS
  • TABLE 17 LIST OF PATENTS, 2021-2025
  • TABLE 18 GREEN HYDROGEN PRODUCTION: OFFSHORE WIND-POWERED ELECTROLYSIS
  • TABLE 19 OFFSHORE ENERGY ISLAND & HYBRID RENEWABLE HUBS
  • TABLE 20 OFFSHORE WIND POWER FOR DATA CENTERS & AI INFRASTRUCTURE
  • TABLE 21 GREEN MARITIME FUEL PRODUCTION
  • TABLE 22 SMART OFFSHORE GRIDS & CROSS-BORDER HVDC NETWORKS
  • TABLE 23 TOP USE CASES AND OFFSHORE WIND MARKET POTENTIAL
  • TABLE 24 BEST PRACTICES: USE CASES OF OFFSHORE WIND SYSTEMS, BY COMPANY
  • TABLE 25 CASE STUDIES RELATED TO AI/GEN AI IMPLEMENTATION
  • TABLE 26 INTERCONNECTED ECOSYSTEM AND IMPACT ON OFFSHORE WIND MARKET PLAYERS
  • TABLE 27 NORTH AMERICA: REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS
  • TABLE 28 EUROPE: REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS
  • TABLE 29 ASIA PACIFIC: REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS
  • TABLE 30 GLOBAL INDUSTRY STANDARDS
  • TABLE 31 LABELING AND ECO-STANDARDS
  • TABLE 32 INFLUENCE OF STAKEHOLDERS ON BUYING PROCESS, BY COMPONENT (%)
  • TABLE 33 KEY BUYING CRITERIA FOR COMPONENT SEGMENTS
  • TABLE 34 OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 35 OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 36 TURBINES: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 37 TURBINES: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 38 SUBSTRUCTURES: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 39 SUBSTRUCTURES: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 40 ELECTRICAL INFRASTRUCTURE: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 41 ELECTRICAL INFRASTRUCTURE: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 42 OFFSHORE WIND MARKET, BY WATER DEPTH, 2023-2025 (USD BILLION)
  • TABLE 43 OFFSHORE WIND MARKET, BY WATER DEPTH, 2026-2035 (USD BILLION)
  • TABLE 44 SHALLOW WATER: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 45 SHALLOW WATER: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 46 TRANSITIONAL WATER: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 47 TRANSITIONAL WATER: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 48 DEEP WATER: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 49 DEEP WATER: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 50 OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2023-2025 (USD BILLION)
  • TABLE 51 OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2026-2035 (USD BILLION)
  • TABLE 52 FIXED: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 53 FIXED: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 54 FLOATING: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 55 FLOATING: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 56 OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 57 OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 58 BELOW 5 MW: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 59 BELOW 5 MW: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 60 5-10 MW: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 61 5-10 MW: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 62 11-15 MW: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 63 11-15 MW: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 64 ABOVE 15 MW: OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 65 ABOVE 15 MW: OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 66 OFFSHORE WIND MARKET, BY REGION, 2023-2025 (USD BILLION)
  • TABLE 67 OFFSHORE WIND MARKET, BY REGION, 2026-2035 (USD BILLION)
  • TABLE 68 ASIA PACIFIC: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 69 ASIA PACIFIC: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 70 ASIA PACIFIC: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 71 ASIA PACIFIC: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 72 ASIA PACIFIC: OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2023-2025 (USD BILLION)
  • TABLE 73 ASIA PACIFIC: OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2026-2035 (USD BILLION)
  • TABLE 74 ASIA PACIFIC: OFFSHORE WIND MARKET, BY WATER DEPTH, 2023-2025 (USD BILLION)
  • TABLE 75 ASIA PACIFIC: OFFSHORE WIND MARKET, BY WATER DEPTH, 2026-2035 (USD BILLION)
  • TABLE 76 ASIA PACIFIC: OFFSHORE WIND MARKET, BY COUNTRY, 2023-2025 (USD BILLION)
  • TABLE 77 ASIA PACIFIC: OFFSHORE WIND MARKET, BY COUNTRY, 2026-2035 (USD BILLION)
  • TABLE 78 CHINA: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 79 CHINA: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 80 CHINA: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 81 CHINA: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 82 TAIWAN: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 83 TAIWAN: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 84 TAIWAN: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 85 TAIWAN: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 86 JAPAN: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 87 JAPAN: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 88 JAPAN: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 89 JAPAN: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 90 SOUTH KOREA: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 91 SOUTH KOREA: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 92 SOUTH KOREA: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 93 SOUTH KOREA: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 94 REST OF ASIA PACIFIC: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 95 REST OF ASIA PACIFIC: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 96 REST OF ASIA PACIFIC: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 97 REST OF ASIA PACIFIC: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 98 EUROPE: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 99 EUROPE: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 100 EUROPE: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 101 EUROPE: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 102 EUROPE: OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2023-2025 (USD BILLION)
  • TABLE 103 EUROPE: OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2026-2035 (USD BILLION)
  • TABLE 104 EUROPE: OFFSHORE WIND MARKET, BY WATER DEPTH, 2023-2025 (USD BILLION)
  • TABLE 105 EUROPE: OFFSHORE WIND MARKET, BY WATER DEPTH, 2026-2035 (USD BILLION)
  • TABLE 106 EUROPE: OFFSHORE WIND MARKET, BY COUNTRY, 2023-2025 (USD BILLION)
  • TABLE 107 EUROPE: OFFSHORE WIND MARKET, BY COUNTRY, 2026-2035 (USD BILLION)
  • TABLE 108 GERMANY: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 109 GERMANY: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 110 GERMANY: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 111 GERMANY: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 112 UK: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 113 UK: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 114 UK: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 115 UK: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 116 DENMARK: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 117 DENMARK: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 118 DENMARK: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 119 DENMARK: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 120 FRANCE: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 121 FRANCE: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 122 FRANCE: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 123 FRANCE: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 124 POLAND: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 125 POLAND: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 126 POLAND: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 127 POLAND: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 128 NETHERLANDS: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 129 NETHERLANDS: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 130 NETHERLANDS: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 131 NETHERLANDS: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 132 REST OF EUROPE: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 133 REST OF EUROPE: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 134 REST OF EUROPE: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 135 REST OF EUROPE: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 136 NORTH AMERICA: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 137 NORTH AMERICA: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 138 NORTH AMERICA: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 139 NORTH AMERICA: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 140 NORTH AMERICA: OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2023-2025 (USD BILLION)
  • TABLE 141 NORTH AMERICA: OFFSHORE WIND MARKET, BY FOUNDATION TYPE, 2026-2035 (USD BILLION)
  • TABLE 142 NORTH AMERICA: OFFSHORE WIND MARKET, BY WATER DEPTH, 2023-2025 (USD BILLION)
  • TABLE 143 NORTH AMERICA: OFFSHORE WIND MARKET, BY WATER DEPTH, 2026-2035 (USD BILLION)
  • TABLE 144 NORTH AMERICA: OFFSHORE WIND MARKET, BY COUNTRY, 2023-2025 (USD BILLION)
  • TABLE 145 NORTH AMERICA: OFFSHORE WIND MARKET, BY COUNTRY, 2026-2035 (USD BILLION)
  • TABLE 146 US: OFFSHORE WIND MARKET, BY COMPONENT, 2023-2025 (USD BILLION)
  • TABLE 147 US: OFFSHORE WIND MARKET, BY COMPONENT, 2026-2035 (USD BILLION)
  • TABLE 148 US: OFFSHORE WIND MARKET, BY TURBINE RATING, 2023-2025 (USD BILLION)
  • TABLE 149 US: OFFSHORE WIND MARKET, BY TURBINE RATING, 2026-2035 (USD BILLION)
  • TABLE 150 OFFSHORE WIND MARKET: OVERVIEW OF STRATEGIES ADOPTED BY KEY PLAYERS, MAY 2021-APRIL 2026
  • TABLE 151 OFFSHORE WIND MARKET: DEGREE OF COMPETITION, 2025
  • TABLE 152 OFFSHORE WIND MARKET: REGION FOOTPRINT
  • TABLE 153 OFFSHORE WIND MARKET: COMPONENT FOOTPRINT
  • TABLE 154 OFFSHORE WIND MARKET: WATER DEPTH FOOTPRINT
  • TABLE 155 OFFSHORE WIND MARKET: TURBINE RATING FOOTPRINT
  • TABLE 156 OFFSHORE WIND MARKET: DETAILED LIST OF KEY STARTUPS/SMES
  • TABLE 157 OFFSHORE WIND MARKET: COMPETITIVE BENCHMARKING OF KEY STARTUPS/SMES
  • TABLE 158 OFFSHORE WIND MARKET: PRODUCT LAUNCHES, MAY 2021-APRIL 2026
  • TABLE 159 OFFSHORE WIND MARKET: DEALS, MAY 2021-APRIL 2026
  • TABLE 160 OFFSHORE WIND MARKET: EXPANSIONS, MAY 2021-APRIL 2026
  • TABLE 161 OFFSHORE WIND MARKET: OTHER DEVELOPMENTS, MAY 2021-APRIL 2026
  • TABLE 162 SIEMENS ENERGY: COMPANY OVERVIEW
  • TABLE 163 SIEMENS ENERGY: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 164 SIEMENS ENERGY: DEALS
  • TABLE 165 SIEMENS ENERGY: OTHER DEVELOPMENTS
  • TABLE 166 MING YANG SMART ENERGY GROUP CO., LTD.: COMPANY OVERVIEW
  • TABLE 167 MING YANG SMART ENERGY GROUP CO., LTD.: PRODUCTS/SOLUTIONS/ SERVICES OFFERED
  • TABLE 168 MING YANG SMART ENERGY GROUP CO., LTD.: PRODUCT LAUNCHES
  • TABLE 169 MING YANG SMART ENERGY GROUP CO., LTD.: DEALS
  • TABLE 170 MING YANG SMART ENERGY GROUP CO., LTD.: EXPANSIONS
  • TABLE 171 VESTAS: COMPANY OVERVIEW
  • TABLE 172 VESTAS: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 173 VESTAS: DEALS
  • TABLE 174 VESTAS: OTHER DEVELOPMENTS
  • TABLE 175 GOLDWIND: COMPANY OVERVIEW
  • TABLE 176 GOLDWIND: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 177 GOLDWIND: PRODUCT LAUNCHES
  • TABLE 178 GOLDWIND: DEALS
  • TABLE 179 GOLDWIND: EXPANSIONS
  • TABLE 180 ENVISION GROUP: COMPANY OVERVIEW
  • TABLE 181 ENVISION GROUP: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 182 ENVISION GROUP: PRODUCT LAUNCHES
  • TABLE 183 ENVISION GROUP: DEALS
  • TABLE 184 ENVISION GROUP: EXPANSIONS
  • TABLE 185 ENVISION GROUP: OTHER DEVELOPMENTS
  • TABLE 186 PRYSMIAN: COMPANY OVERVIEW
  • TABLE 187 PRYSMIAN: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 188 GE VERNOVA: COMPANY OVERVIEW
  • TABLE 189 GE VERNOVA: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 190 GE VERNOVA: DEALS
  • TABLE 191 GE VERNOVA: EXPANSIONS
  • TABLE 192 NEXANS: COMPANY OVERVIEW
  • TABLE 193 NEXANS: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 194 SIF GROUP: COMPANY OVERVIEW
  • TABLE 195 SIF GROUP: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 196 SIF GROUP: PRODUCT LAUNCHES
  • TABLE 197 SIF GROUP: EXPANSIONS
  • TABLE 198 SIF GROUP: OTHER DEVELOPMENTS
  • TABLE 199 SCHNEIDER ELECTRIC: COMPANY OVERVIEW
  • TABLE 200 SCHNEIDER ELECTRIC: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 201 DONGFANG ELECTRIC WIND POWER CO., LTD.: COMPANY OVERVIEW
  • TABLE 202 DONGFANG ELECTRIC WIND POWER CO., LTD.: PRODUCTS/SOLUTIONS/ SERVICES OFFERED
  • TABLE 203 DONGFANG ELECTRIC WIND POWER CO., LTD.: PRODUCT LAUNCHES
  • TABLE 204 DONGFANG ELECTRIC WIND POWER CO., LTD.: EXPANSIONS
  • TABLE 205 DOOSAN CORPORATION: COMPANY OVERVIEW
  • TABLE 206 DOOSAN CORPORATION: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 207 DOOSAN CORPORATION: DEALS
  • TABLE 208 HITACHI ENERGY LTD: COMPANY OVERVIEW
  • TABLE 209 HITACHI ENERGY LTD: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 210 HITACHI ENERGY LTD: DEALS
  • TABLE 211 HITACHI ENERGY LTD: OTHER DEVELOPMENTS
  • TABLE 212 ORSTED: COMPANY OVERVIEW
  • TABLE 213 ORSTED: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 214 ORSTED: DEALS
  • TABLE 215 NORTHLAND POWER INC.: COMPANY OVERVIEW
  • TABLE 216 NORTHLAND POWER INC.: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 217 NORTHLAND POWER INC.: DEVELOPMENTS
  • TABLE 218 SHANGHAI SMEC ENTERPRISE CO., LTD.: COMPANY OVERVIEW
  • TABLE 219 SHANGHAI SMEC ENTERPRISE CO., LTD.: PRODUCTS/SOLUTIONS/ SERVICES OFFERED
  • TABLE 220 AKER SOLUTIONS: COMPANY OVERVIEW
  • TABLE 221 AKER SOLUTIONS: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 222 AKER SOLUTIONS: PRODUCT LAUNCHES
  • TABLE 223 AKER SOLUTIONS: OTHER DEVELOPMENTS
  • TABLE 224 EQUINOR ASA: COMPANY OVERVIEW
  • TABLE 225 EQUINOR ASA: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 226 EQUINOR ASA: DEALS
  • TABLE 227 OCEAN WINDS: COMPANY OVERVIEW
  • TABLE 228 OCEAN WINDS: PRODUCTS/SOLUTIONS/SERVICES OFFERED
  • TABLE 229 OCEAN WINDS: DEALS
  • TABLE 230 OCEAN WINDS: OTHER DEVELOPMENTS
  • TABLE 231 EEW GROUP: COMPANY OVERVIEW
  • TABLE 232 CRRC SHANDONG WIND POWER CO., LTD.: COMPANY OVERVIEW
  • TABLE 233 PRINCIPLE POWER: COMPANY OVERVIEW
  • TABLE 234 SSE PLC: COMPANY OVERVIEW
  • TABLE 235 EDF: COMPANY OVERVIEW
  • TABLE 236 VATTENFALL: COMPANY OVERVIEW
  • TABLE 237 MAJOR SECONDARY SOURCES
  • TABLE 238 PRIMARY INTERVIEW PARTICIPANTS
  • TABLE 239 DATA CAPTURED FROM PRIMARY SOURCES
  • TABLE 240 OFFSHORE WIND MARKET: RISK ANALYSIS

List of Figures

  • FIGURE 1 OFFSHORE WIND MARKET SEGMENTATION AND REGIONAL SCOPE
  • FIGURE 2 OFFSHORE WIND MARKET: DURATION CONSIDERED
  • FIGURE 3 OFFSHORE WIND MARKET SCENARIO
  • FIGURE 4 GLOBAL OFFSHORE WIND MARKET SIZE, 2023-2035
  • FIGURE 5 MAJOR STRATEGIES ADOPTED BY KEY PLAYERS IN OFFSHORE WIND MARKET, 2021-2026
  • FIGURE 6 DISRUPTIONS INFLUENCING GROWTH OF OFFSHORE WIND MARKET
  • FIGURE 7 HIGH-GROWTH SEGMENTS IN OFFSHORE WIND MARKET, 2026-2035
  • FIGURE 8 ASIA PACIFIC TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD
  • FIGURE 9 INCREASING INVESTMENT IN RENEWABLE ENERGY, DIGITALIZATION AND FLOATING WIND TECHNOLOGIES TO DRIVE OFFSHORE WIND MARKET
  • FIGURE 10 TURBINES SEGMENT AND ASIA PACIFIC ACCOUNTED FOR LARGEST MARKET SHARE IN 2025
  • FIGURE 11 11-15 MW SEGMENT TO DOMINATE OFFSHORE WIND MARKET FROM 2026 TO 2035
  • FIGURE 12 TURBINES SEGMENT TO HOLD LARGEST MARKET SHARE IN 2026 AND 2035
  • FIGURE 13 FLOATING SEGMENT TO EXHIBIT HIGHER CAGR BETWEEN 2026 AND 2035
  • FIGURE 14 DEEP WATER SEGMENT TO RECORD HIGHEST CAGR DURING FORECAST PERIOD
  • FIGURE 15 SOUTH KOREA TO REGISTER HIGHEST CAGR IN GLOBAL OFFSHORE WIND MARKET DURING FORECAST PERIOD
  • FIGURE 16 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES
  • FIGURE 17 TOTAL OFFSHORE WIND ADDITIONS, BY COUNTRY
  • FIGURE 18 NEW OFFSHORE WIND INSTALLATIONS
  • FIGURE 19 OFFSHORE WIND INSTALLATIONS IN EMERGING COUNTRIES
  • FIGURE 20 PORTER'S FIVE FORCES ANALYSIS
  • FIGURE 21 OFFSHORE WIND VALUE CHAIN ANALYSIS
  • FIGURE 22 KEY PARTICIPANTS IN OFFSHORE WIND ECOSYSTEM
  • FIGURE 23 OFFSHORE WIND ECOSYSTEM ANALYSIS
  • FIGURE 24 IMPORT DATA FOR HS CODE 850231-COMPLIANT PRODUCTS FOR TOP FIVE COUNTRIES, 2021-2025
  • FIGURE 25 EXPORT DATA FOR HS CODE 850231-COMPLIANT PRODUCTS FOR TOP FIVE COUNTRIES, 2021-2025
  • FIGURE 26 TRENDS/DISRUPTIONS INFLUENCING CUSTOMER BUSINESS
  • FIGURE 27 INVESTMENT AND FUNDING SCENARIO, 2025
  • FIGURE 28 PATENTS APPLIED AND GRANTED, 2015-2025
  • FIGURE 29 FUTURE APPLICATIONS OF OFFSHORE WIND SYSTEMS
  • FIGURE 30 REAL-WORLD APPLICATIONS
  • FIGURE 31 DECISION-MAKING FACTORS
  • FIGURE 32 INFLUENCE OF STAKEHOLDERS ON BUYING PROCESS, BY COMPONENT
  • FIGURE 33 KEY BUYING CRITERIA, BY COMPONENT
  • FIGURE 34 OFFSHORE WIND SOLUTION ADOPTION BARRIERS AND INTERNAL CHALLENGES
  • FIGURE 35 TURBINES SEGMENT CAPTURED LARGEST SHARE OF OFFSHORE WIND MARKET IN 2025
  • FIGURE 36 TRANSITIONAL WATER SEGMENT HELD LARGEST SHARE OF OFFSHORE WIND MARKET IN 2025
  • FIGURE 37 FIXED SEGMENT ACCOUNTED FOR LARGER SHARE OF OFFSHORE WIND MARKET IN 2025
  • FIGURE 38 11-15 MW SEGMENT CAPTURED LARGEST SHARE OF OFFSHORE WIND MARKET IN 2025
  • FIGURE 39 SOUTH KOREA TO REGISTER HIGHEST CAGR IN GLOBAL OFFSHORE WIND MARKET FROM 2026 TO 2035
  • FIGURE 40 ASIA PACIFIC HELD LARGEST MARKET SHARE IN 2025
  • FIGURE 41 ASIA PACIFIC: OFFSHORE WIND MARKET SNAPSHOT
  • FIGURE 42 EUROPE: OFFSHORE WIND MARKET SNAPSHOT
  • FIGURE 43 MARKET SHARE ANALYSIS OF COMPANIES OFFERING OFFSHORE WIND SYSTEMS, 2025
  • FIGURE 44 OFFSHORE WIND MARKET: REVENUE ANALYSIS OF TOP FOUR PLAYERS, 2021-2025
  • FIGURE 45 PRODUCT COMPARISON
  • FIGURE 46 OFFSHORE WIND MARKET: COMPANY EVALUATION MATRIX (KEY PLAYERS), 2025
  • FIGURE 47 OFFSHORE WIND MARKET: COMPANY FOOTPRINT
  • FIGURE 48 OFFSHORE WIND MARKET: COMPANY EVALUATION MATRIX (STARTUPS/SMES), 2025
  • FIGURE 49 COMPANY VALUATION
  • FIGURE 50 FINANCIAL METRICS (EV/EBITDA)
  • FIGURE 51 SIEMENS ENERGY: COMPANY SNAPSHOT
  • FIGURE 52 MING YANG SMART ENERGY GROUP CO., LTD.: COMPANY SNAPSHOT
  • FIGURE 53 VESTAS: COMPANY SNAPSHOT
  • FIGURE 54 GOLDWIND: COMPANY SNAPSHOT
  • FIGURE 55 PRYSMIAN: COMPANY SNAPSHOT
  • FIGURE 56 GE VERNOVA: COMPANY SNAPSHOT
  • FIGURE 57 NEXANS: COMPANY SNAPSHOT
  • FIGURE 58 SIF GROUP: COMPANY SNAPSHOT
  • FIGURE 59 SCHNEIDER ELECTRIC: COMPANY SNAPSHOT
  • FIGURE 60 DONGFANG ELECTRIC WIND POWER CO., LTD.: COMPANY SNAPSHOT
  • FIGURE 61 DOOSAN CORPORATION: COMPANY SNAPSHOT
  • FIGURE 62 HITACHI ENERGY LTD: COMPANY SNAPSHOT
  • FIGURE 63 ORSTED: COMPANY SNAPSHOT
  • FIGURE 64 NORTHLAND POWER INC.: COMPANY SNAPSHOT
  • FIGURE 65 SHANGHAI SMEC ENTERPRISE CO., LTD.: COMPANY SNAPSHOT
  • FIGURE 66 AKER SOLUTIONS: COMPANY SNAPSHOT
  • FIGURE 67 EQUINOR ASA: COMPANY SNAPSHOT
  • FIGURE 68 OFFSHORE WIND MARKET: RESEARCH DESIGN
  • FIGURE 69 DATA CAPTURED FROM SECONDARY SOURCES
  • FIGURE 70 CORE FINDINGS FROM EXPERT INSIGHTS
  • FIGURE 71 BREAKDOWN OF PRIMARY INTERVIEWS, BY COMPANY TYPE, DESIGNATION, AND REGION
  • FIGURE 72 OFFSHORE WIND MARKET: BOTTOM-UP APPROACH
  • FIGURE 73 OFFSHORE WIND MARKET: TOP-DOWN APPROACH
  • FIGURE 74 KEY METRICS CONSIDERED TO ANALYZE DEMAND FOR OFFSHORE WIND SYSTEMS
  • FIGURE 75 KEY METRICS CONSIDERED TO ASSESS SUPPLY OF OFFSHORE WIND SYSTEMS
  • FIGURE 76 OFFSHORE WIND MARKET: SUPPLY-SIDE ANALYSIS
  • FIGURE 77 INDUSTRY CONCENTRATION, 2025
  • FIGURE 78 OFFSHORE WIND MARKET: DATA TRIANGULATION
  • FIGURE 79 OFFSHORE WIND MARKET: RESEARCH LIMITATIONS