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Floating Offshore Wind Power Global Market Opportunities and Strategies to 2034

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    Report

  • 249 Pages
  • December 2025
  • Region: Global
  • The Business Research Company
  • ID: 6215016
This report describes and explains the floating offshore wind power market and covers 2019-2024, termed the historic period, and 2024-2029, 2034F termed the forecast period. The report evaluates the market across each region and for the major economies within each region.

The global floating offshore wind power market reached a value of nearly $219.18 million in 2024, having grown at a compound annual growth rate (CAGR) of 37.88% since 2019. The market is expected to grow from $219.18 million in 2024 to $1.33 billion in 2029 at a rate of 43.49%. The market is then expected to grow at a CAGR of 68.97% from 2029 and reach $18.36 billion in 2034.

Growth in the historic period resulted from high electricity demand, rising government funding for decarbonization, rising demand for corporate renewable PPAs and increased private and institutional investment in floating wind projects. Factors that negatively affected growth in the historic period were the high initial capital and installation costs and complex grid integration challenges.

Going forward, high integration of renewable energy sources, expansion of offshore wind projects, expanding industrial and port infrastructure for floating wind and rising connection to offshore transmission hubs and grids will drive growth. Factors that could hinder the growth of the floating offshore wind power market in the future include supply chain and component cost volatility, environmental and regulatory approval barriers and impact of trade war and tariff.

Western Europe was the largest region in the floating offshore wind power market, accounting for 81.81% or $179.31 million of the total in 2024. Going forward, the fastest-growing regions in the floating offshore wind power market will be Asia Pacific and Western Europe where growth will be at CAGRs of 82.22% and 24.32% respectively.

The global floating offshore wind power market is concentrated, with large players operating in the market. The top 10 competitors in the market made up 41.30% of the total market in 2024. Equinor ASA was the largest competitor with a 8.57% share of the market, followed by Ørsted A/S with 5.09%, Vestas Wind Systems A/S with 4.81%, GE Vernova, with 4.43%, Siemens Energy AG (Siemens Gamesa Renewable Energy SA), with 3.62%, RWE AG with 3.52%, TotalEnergies SE with 3.35%, BW Ideol with 2.66%, Saipem S.p.A. with 2.65% and Aker Solutions ASA (Mainstream Renewable Power) with 2.60%.

The floating offshore wind power market is segmented by component into mooring systems, platforms, subsea cables and turbines. The turbines market was the largest segment of the floating offshore wind power market segmented by component, accounting for 41.63% or $91.24 million of the total in 2024. Going forward, the platforms segment is expected to be the fastest growing segment in the floating offshore wind power market segmented by component, at a CAGR of 52.49% during 2024-2029.

The floating offshore wind power market is segmented by technology into floating wind turbine, hydrodynamic floating structure and other technologies. The hydrodynamic floating structure market was the largest segment of the floating offshore wind power market segmented by technology, accounting for 50.88% or $111.51 million of the total in 2024. Going forward, the hydrodynamic floating structure segment is expected to be the fastest growing segment in the floating offshore wind power market segmented by technology, at a CAGR of 48.39% during 2024-2029.

The floating offshore wind power market is segmented by water depth into shallow water, transitional water and deep water. The transitional water market was the largest segment of the floating offshore wind power market segmented by water depth, accounting for 48.38% or $106.03 million of the total in 2024. Going forward, the deep water segment is expected to be the fastest growing segment in the floating offshore wind power market segmented by water depth, at a CAGR of 49.38% during 2024-2029.

The floating offshore wind power market is segmented by turbine capacity into Up To 3 MW, 3 MW - 5 MW and above 5 MW. The above 5 MW market was the largest segment of the floating offshore wind power market segmented by turbine capacity, accounting for 51.72% or $113.37 million of the total in 2024. Going forward, the above 5 MW segment is expected to be the fastest growing segment in the floating offshore wind power market segmented by turbine capacity, at a CAGR of 55.05% during 2024-2029.

The floating offshore wind power market is segmented by application into hydrogen production, off-grid power generation and utility-scale power generation. The utility-scale power generation market was the largest segment of the floating offshore wind power market segmented by application, accounting for 86.81% or $190.26 million of the total in 2024. Going forward, the hydrogen production segment is expected to be the fastest growing segment in the floating offshore wind power market segmented by application, at a CAGR of 56.07% during 2024-2029.

The top opportunities in the floating offshore wind power market segmented by component will arise in the turbines segment, which will gain $440.6 million of global annual sales by 2029. The top opportunities in the floating offshore wind power market segmented by technology will arise in the hydrodynamic floating structure segment, which will gain $690.76 million of global annual sales by 2029. The top opportunities in the floating offshore wind power market segmented by water depth will arise in the transitional water segment, which will gain $531.88 million of global annual sales by 2029. The top opportunities in the floating offshore wind power market segmented by turbine capacity will arise in the above 5 MW segment, which will gain $902.41 million of global annual sales by 2029. The top opportunities in the floating offshore wind power market segmented by application will arise in the utility-scale power generation segment, which will gain $958.98 million of global annual sales by 2029. The floating offshore wind power market size will gain the most in China at $734.0 million.

Market-trend-based strategies for the floating offshore wind power market include innovation in dynamic cable designs for deepwater durability, adoption of high-capacity turbines to boost energy output in deep water, development of smart mooring technologies to enhance turbine stability, focus on lightweight semi-submersible platforms for cost efficiency and expansion of hybrid offshore energy systems integrating wind and wave power.

Player-adopted strategies in the floating offshore wind power market include focus on strategic acquisitions to enhance their business offerings, business presence through securing new orders, new launches and strategic partnerships.

To take advantage of the opportunities, the analyst recommends the floating offshore wind power market companies to focus on dynamic subsea cable system advancement, focus on ultra-large turbine deployment and platform integration, focus on lightweight semi-submersible platform design, focus on hybrid offshore renewable system integration, focus on platforms to unlock scalable deep-water deployment, focus on hydrodynamic floating structures to enable deep-water scaling, focus on deep water deployment to maximize long-term capacity growth, focus on above 5 MW capacity to capture large-scale offshore growth, expand in emerging markets, focus on smart mooring system collaboration, focus on flexible value-based pricing to improve project viability and investor confidence, focus on performance-driven promotion to increase stakeholder confidence and accelerate adoption, focus on digital outreach and collaborative education to expand market readiness and focus on hydrogen production to capture high-growth offshore value creation.

Table of Contents

1 Executive Summary
1.1 Floating Offshore Wind Power - Market Attractiveness and Macro Economic Landscape
2 Table of Contents3 List of Tables4 List of Figures5 Report Structure
6 Market Characteristics
6.1 General Market Definition
6.2 Summary
6.3 Floating Offshore Wind Power Market Definition and Segmentations
6.4 Market Segmentation by Component
6.4.1 Mooring Systems
6.4.2 Platforms
6.4.3 Subsea Cables
6.4.4 Turbines
6.5 Market Segmentation by Technology
6.5.1 Floating Wind Turbine
6.5.2 Hydrodynamic Floating Structure
6.5.3 Other Technologies
6.6 Market Segmentation by Water Depth
6.6.1 Shallow Water
6.6.2 Transitional Water
6.6.3 Deep Water
6.7 Market Segmentation by Turbine Capacity
6.7.1 Up to 3 MW
6.7.2 3 MW - 5 MW
6.7.3 Above 5 MW
6.8 Market Segmentation by Application
6.8.1 Hydrogen Production
6.8.2 Off-Grid Power Generation
6.8.3 Utility-Scale Power Generation
7 Major Market Trends
7.1 Innovation in Dynamic Cable Designs for Deepwater Durability
7.2 Adoption of High-Capacity Turbines to Boost Energy Output in Deep Waters
7.3 Development of Smart Mooring Technologies to Enhance Turbine Stability
7.4 Focus on Lightweight Semi-Submersible Platforms for Cost Efficiency
7.5 Expansion of Hybrid Offshore Energy Systems Integrating Wind and Wave Power
8 Global Floating Offshore Wind Power Growth Analysis and Strategic Analysis Framework
8.1 Global Floating Offshore Wind Power PESTEL Analysis
8.1.1 Political
8.1.2 Economic
8.1.3 Social
8.1.4 Technological
8.1.5 Environmental
8.1.6 Legal
8.2 Analysis of End User (B2B)
8.2.1 Hydrogen Production
8.2.2 Off-Grid Power Generation
8.2.3 Utility-Scale Power Generation
8.2.4 Commercial and Industrial (C&I) Consumers
8.2.5 Other End users
8.3 Global Floating Offshore Wind Power Market Growth Rate Analysis
8.4 Historic Market Growth, 2019-2024, Value ($ Million)
8.4.1 Market Drivers 2019-2024
8.4.2 Market Restraints 2019-2024
8.5 Forecast Market Growth, 2024-2029, 2034F Value ($ Million)
8.5.1 Market Drivers 2024-2029
8.5.2 Market Restraints 2024-2029
8.6 Total Addressable Market for the Floating Offshore Wind Power Market - Business to Business (B2B)
8.6.1 TAM Comparison Analysis
9 Global Floating Offshore Wind Power Market Segmentation
9.1 Global Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.2 Global Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.3 Global Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.4 Global Floating Offshore Wind Power Market, Segmentation by Turbine Capacity, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.5 Global Floating Offshore Wind Power Market, Segmentation by Application, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.6 Global Floating Offshore Wind Power Market, Sub-Segmentation of Mooring Systems, by Type, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.7 Global Floating Offshore Wind Power Market, Sub-Segmentation of Platforms, by Type, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.8 Global Floating Offshore Wind Power Market, Sub-Segmentation of Subsea Cables, by Type, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
9.9 Global Floating Offshore Wind Power Market, Sub-Segmentation of Turbines, by Type, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
10 Floating Offshore Wind Power Market, Regional and Country Analysis
10.1 Global Floating Offshore Wind Power Market, by Region, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
10.2 Global Floating Offshore Wind Power Market, by Country, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11 Asia-Pacific Market
11.1 Summary
11.2 Market Overview
11.2.1 Region Information
11.2.2 Market Information
11.2.3 Background Information
11.2.4 Government Initiatives
11.2.5 Regulations
11.2.6 Regulatory Bodies
11.2.7 Major Associations
11.2.8 Taxes Levied
11.2.9 Corporate Tax Structure
11.2.10 Investments
11.2.11 Major Companies
11.3 Asia-Pacific Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.4 Asia-Pacific Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.5 Asia-Pacific Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.6 Asia-Pacific Floating Offshore Wind Power Market: Country Analysis
11.7 China Market
11.8 Summary
11.9 Market Overview
11.9.1 Country Information
11.9.2 Market Information
11.9.3 Background Information
11.9.4 Government Initiatives
11.9.5 Regulations
11.9.6 Regulatory Bodies
11.9.7 Major Associations
11.9.8 Taxes Levied
11.9.9 Corporate Tax Structure
11.9.10 Investments
11.9.11 Major Companies
11.10 China Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.11 China Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.12 China Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.13 Japan Market
11.14 Summary
11.15 Market Overview
11.15.1 Country Information
11.15.2 Market Information
11.15.3 Background Information
11.15.4 Government Initiatives
11.15.5 Regulations
11.15.6 Regulatory Bodies
11.15.7 Major Associations
11.15.8 Taxes Levied
11.15.9 Corporate Tax Structure
11.15.10 Investments
11.15.11 Major Companies
11.16 Japan Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.17 Japan Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.18 Japan Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.19 South Korea Market
11.20 Market Overview
11.20.1 Country Information
11.20.2 Background Information
11.20.3 Government Initiatives
11.20.4 Regulations
11.20.5 Regulatory Bodies
11.20.6 Major Associations
11.20.7 Taxes Levied
11.20.8 Corporate Tax Structure
11.20.9 Major Companies
11.21 South Korea Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.22 South Korea Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
11.23 South Korea Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12 Western Europe Market
12.1 Summary
12.2 Market Overview
12.2.1 Region Information
12.2.2 Market Information
12.2.3 Background Information
12.2.4 Government Initiatives
12.2.5 Regulations
12.2.6 Regulatory Bodies
12.2.7 Major Associations
12.2.8 Taxes Levied
12.2.9 Corporate Tax Structure
12.2.10 Investments
12.2.11 Major Companies
12.3 Western Europe Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.4 Western Europe Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.5 Western Europe Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.6 Western Europe Floating Offshore Wind Power Market: Country Analysis
12.7 UK Market
12.8 UK Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.9 UK Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.10 UK Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.11 France Market
12.12 France Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.13 France Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.14 France Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.15 Italy Market
12.16 Italy Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.17 Italy Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.18 Italy Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.19 Spain Market
12.20 Spain Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.21 Spain Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
12.22 Spain Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
13 North America Market
13.1 Market Overview
13.1.1 Region Information
13.1.2 Background Information
13.1.3 Government Initiatives
13.1.4 Regulations
13.1.5 Regulatory Bodies
13.1.6 Major Associations
13.1.7 Taxes Levied
13.1.8 Corporate Tax Structure
13.1.9 Major Companies
13.2 North America Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
13.3 North America Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
13.4 North America Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
13.5 North America Floating Offshore Wind Power Market: Country Analysis
13.6 USA Market
13.7 Market Overview
13.7.1 Country Information
13.7.2 Background Information
13.7.3 Government Initiatives
13.7.4 Regulations
13.7.5 Regulatory Bodies
13.7.6 Major Associations
13.7.7 Taxes Levied
13.7.8 Corporate Tax Structure
13.7.9 Major Companies
13.8 USA Floating Offshore Wind Power Market, Segmentation by Component, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
13.9 USA Floating Offshore Wind Power Market, Segmentation by Technology, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
13.10 USA Floating Offshore Wind Power Market, Segmentation by Water Depth, Historic and Forecast, 2019-2024, 2029F, 2034F, Value ($ Million)
14 Competitive Landscape and Company Profiles
14.1 Company Profiles
14.2 Equinor ASA
14.2.1 Company Overview
14.2.2 Products and Services
14.2.3 Financial Overview
14.3 Ørsted A/S
14.3.1 Company Overview
14.3.2 Products and Services
14.3.3 Business Strategy
14.3.4 Financial Overview
14.4 Vestas Wind Systems A/S
14.4.1 Company Overview
14.4.2 Products and Services
14.4.3 Business Strategy
14.4.4 Financial Overview
14.5 GE Vernova
14.5.1 Company Overview
14.5.2 Products and Services
14.5.3 Business Strategy
14.5.4 Financial Overview
14.6 Siemens Energy AG (Siemens Gamesa Renewable Energy SA)
14.6.1 Company Overview
14.6.2 Products and Services
14.6.3 Business Strategy
14.6.4 Financial Overview
15 Other Major and Innovative Companies
15.1 RWE AG
15.1.1 Company Overview
15.1.2 Products and Services
15.2 TotalEnergies SE
15.2.1 Company Overview
15.2.2 Products and Services
15.3 BW Ideol
15.3.1 Company Overview
15.3.2 Products and Services
15.4 Saipem S.p.A.
15.4.1 Company Overview
15.4.2 Products and Services
15.5 Aker Solutions ASA
15.5.1 Company Overview
15.5.2 Products and Services
15.6 SBM Offshore N.V.
15.6.1 Company Overview
15.6.2 Products and Services
15.7 Iberdrola S.A.
15.7.1 Company Overview
15.7.2 Products and Services
15.8 China Offshore Oil Engineering Company (COOEC)
15.8.1 Company Overview
15.8.2 Products and Services
15.9 Boskalis (Royal Boskalis Westminster N.V.)
15.9.1 Company Overview
15.9.2 Products and Services
15.10 TechnipFMC plc
15.10.1 Company Overview
15.10.2 Products and Services
15.11 China MingYang Smart Energy Group Co., Ltd.
15.11.1 Company Overview
15.11.2 Products and Services
15.12 Principle Power Inc.
15.12.1 Company Overview
15.12.2 Products and Services
15.13 EDF Renewables Inc.
15.13.1 Company Overview
15.13.2 Products and Services
15.14 MODEC Inc.
15.14.1 Company Overview
15.14.2 Products and Services
15.15 Doosan Corporation (Doosan Enerbility)
15.15.1 Company Overview
15.15.2 Products and Services
16 Competitive Benchmarking17 Competitive Dashboard
18 Key Mergers and Acquisitions
18.1 Octopus Energy Generation Acquired Ocergy
18.2 Edison S.p.A. Acquired Wind Energy Pozzallo
18.3 ENEOS Renewable Energy Acquired GoliatVIND
18.4 Orsted Acquired Salamander
19 Recent Developments in Floating offshore wind power
19.1 Expansion of Pilot Projects in Floating Wind Energy
19.2 Mingyang Unveils 50 MW Floating Wind Turbine to Redefine Deep-Water Power Generation
19.3 Launch of Next-Generation Floating Offshore Wind Platform
20 Opportunities and Strategies
20.1 Global Floating Offshore Wind Power Market in 2029 - Countries Offering Most New Opportunities
20.2 Global Floating Offshore Wind Power Market in 2029 - Segments Offering Most New Opportunities
20.3 Global Floating Offshore Wind Power Market in 2029 - Growth Strategies
20.3.1 Market Trend Based Strategies
20.3.2 Competitor Strategies
21 Floating Offshore Wind Power Market, Conclusions and Recommendations
21.1 Conclusions
21.2 Recommendations
21.2.1 Product
21.2.2 Place
21.2.3 Price
21.2.4 Promotion
21.2.5 People
22 Appendix
22.1 Geographies Covered
22.2 Market Data Sources
22.3 Research Methodology
22.4 Currencies
22.5 About the Analyst
22.6 Copyright and Disclaimer

Executive Summary

Floating Offshore Wind Power Global Market Opportunities and Strategies to 2034 provides the strategists; marketers and senior management with the critical information they need to assess the global floating offshore wind power market as it emerges from the COVID-19 shut down.

Reasons to Purchase:

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  • Identify growth segments for investment.
  • Outperform competitors using forecast data and the drivers and trends shaping the market.
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  • Benchmark performance against key competitors.
  • Utilize the relationships between key data sets for superior strategizing.
  • Suitable for supporting your internal and external presentations with reliable high-quality data and analysis.

Description

Where is the largest and fastest-growing market for floating offshore wind power? How does the market relate to the overall economy; demography and other similar markets? What forces will shape the market going forward? The floating offshore wind power market global report answers all these questions and many more.

The report covers market characteristics; size and growth; segmentation; regional and country breakdowns; competitive landscape; market shares; trends and strategies for this market. It traces the market’s history and forecasts market growth by geography. It places the market within the context of the wider floating offshore wind power market; and compares it with other markets.

The report covers the following chapters:

  • Introduction and Market Characteristics - Brief introduction to the segmentations covered in the market, definitions and explanations about the segment by component, by technology, by water depth, by turbine capacity and by application.
  • Key Trends - Highlights the major trends shaping the global market. This section also highlights likely future developments in the market.
  • Growth Analysis and Strategic Analysis Framework - Analysis on PESTEL, end use industries, market growth rate, global historic (2019-2024) and forecast (2024-2029, 2034F) market values and drivers and restraints that support and control the growth of the market in the historic and forecast periods, forecast growth contributors and total addressable market (TAM).
  • Global Market Size and Growth - Global historic (2019-2024) and forecast (2024-2029, 2034F) market values and drivers and restraints that support and control the growth of the market in the historic and forecast periods.
  • Regional and Country Analysis - Historic (2019-2024) and forecast (2024-2029, 2034F) market values and growth and market share comparison by region and country.
  • Market Segmentation - Contains the market values (2019-2024) (2024-2029, 2034F) and analysis for each segment by component, by technology, by water depth, by turbine capacity and by application in the market. Historic (2019-2024) and forecast (2024-2029) and (2029-2034) market values and growth and market share comparison by region market.
  • Regional Market Size and Growth - Regional market size (2024), historic (2019-2024) and forecast (2024-2029, 2034F) market values and growth and market share comparison of countries within the region. This report includes information on all the regions Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East and Africa and major countries within each region.
  • Competitive Landscape - Details on the competitive landscape of the market, estimated market shares and company profiles of the leading players.
  • Other Major and Innovative Companies - Details on the company profiles of other major and innovative companies in the market.
  • Competitive Benchmarking - Briefs on the financials comparison between major players in the market.
  • Competitive Dashboard - Briefs on competitive dashboard of major players.
  • Key Mergers and Acquisitions - Information on recent mergers and acquisitions in the market covered in the report.This section gives key financial details of mergers and acquisitions, which have shaped the market in recent years.
  • Recent Developments - Information on recent developments in the market covered in the report.
  • Market Opportunities and Strategies - Describes market opportunities and strategies based on findings of the research, with information on growth opportunities across countries, segments and strategies to be followed in those markets.
  • Conclusions and Recommendations - This section includes recommendations for floating offshore wind power providers in terms of product/service offerings geographic expansion, marketing strategies and target groups.
  • Appendix - This section includes details on the NAICS codes covered, abbreviations and currencies codes used in this report.

Markets Covered: 1) By Component: Mooring Systems; Platforms; Subsea Cables; Turbines

2) By Technology: Floating Wind Turbine; Hydrodynamic Floating Structure; Other Technologies
3) By Water Depth: Shallow Water; Transitional Water; Deep Water
4) By Turbine Capacity: Up to 3 MW; 3 MW - 5 MW; Above 5 MW
5) By Application: Hydrogen Production; Off-Grid Power Generation; Utility-Scale Power Generation

Companies Mentioned: Equinor ASA; Ørsted A/S; Vestas Wind Systems A/S; GE Vernova; Siemens Energy AG (Siemens Gamesa Renewable Energy SA)

Countries: China; Australia; India; Indonesia; Japan; South Korea; USA; Canada; Brazil; France; Germany; UK; Italy; Spain; Russia

Regions: Asia-Pacific; Western Europe; Eastern Europe; North America; South America; Middle East; Africa

Time Series: Five years historic and ten years forecast.

Data: Ratios of market size and growth to related markets; GDP proportions; expenditure per capita; floating offshore wind power indicators comparison.

Data Segmentation: Country and regional historic and forecast data; market share of competitors; market segments.

Sourcing and Referencing: Data and analysis throughout the report is sourced using end notes.

Companies Mentioned

The companies profiled in this Floating Offshore Wind Power market report include:
  • Equinor ASA
  • Ørsted A/S
  • Vestas Wind Systems A/S
  • GE Vernova
  • Siemens Energy AG (Siemens Gamesa Renewable Energy SA)
  • RWE AG
  • TotalEnergies SE
  • BW Ideol
  • Saipem S.p.A.
  • Aker Solutions ASA (Mainstream Renewable Power)
  • Ocean Winds (OW)
  • China Three Gorges Corporation (CTG)
  • Goldwind Science & Technology Co. Ltd.
  • Mingyang Smart Energy
  • Shanghai Electric Group
  • China General Nuclear Power Group (CGN)
  • China National Offshore Oil Corporation (CNOOC)
  • CSSC Haizhuang Windpower
  • Japan Blue Energy (JB Energy)
  • Toda Corporation
  • Mitsubishi Heavy Industries
  • Sumitomo Corporation
  • TEPCO Renewable Power
  • JERA Co., Inc.
  • Marubeni Corporation
  • Obayashi Corporation
  • Hitachi Zosen Corporation
  • Korea Floating Wind (KF Wind)
  • Korea Electric Power Corporation (KEPCO)
  • HD Hyundai Heavy Industries Co. Ltd.
  • Doosan Enerbility
  • SK E&S Co. Ltd.
  • Hanwha Ocean (formerly DSME)
  • Korea National Oil Corporation (KNOC)
  • CS Wind
  • Posco E&C
  • EDF Renouvelables
  • Saitec Offshore Technologies
  • IberBlue Wind
  • Iberdrola
  • EDF Renewables
  • Shell plc
  • TotalEnergies
  • Principle Power
  • Hexicon
  • Copenhagen Infrastructure Partners (CIP)
  • Technip Energies
  • Siemens Gamesa Renewable Energy
  • Northland Power, Inc.
  • DP Energy
  • RWE
  • BW Ideol AS
  • American Offshore Energy (AOE)
  • ECO TLP
  • Octopus Energy Generation
  • Principle Power Inc.
  • TotalEnergies SE
  • Avangrid Inc.
  • Excipio Energy, Inc.
  • NextEra Energy

Table Information