1 Scope of the Report
1.1 Market Introduction
1.2 Years Considered
1.3 Research Objectives
1.4 Market Research Methodology
1.5 Research Process and Data Source
1.6 Economic Indicators
1.7 Currency Considered
1.8 Market Estimation Caveats
2 Executive Summary
2.1 World Market Overview
2.1.1 Global Floating Offshore Wind Platform (FOWP) Annual Sales 2018-2029
2.1.2 World Current & Future Analysis for Floating Offshore Wind Platform (FOWP) by Geographic Region, 2018, 2022 & 2029
2.1.3 World Current & Future Analysis for Floating Offshore Wind Platform (FOWP) by Country/Region, 2018, 2022 & 2029
2.2 Floating Offshore Wind Platform (FOWP) Segment by Type
2.2.1 Spar-Buoy
2.2.2 Semi-submersible
2.2.3 Tension Leg Platform (TLP)
2.3 Floating Offshore Wind Platform (FOWP) Sales by Type
2.3.1 Global Floating Offshore Wind Platform (FOWP) Sales Market Share by Type (2018-2023)
2.3.2 Global Floating Offshore Wind Platform (FOWP) Revenue and Market Share by Type (2018-2023)
2.3.3 Global Floating Offshore Wind Platform (FOWP) Sale Price by Type (2018-2023)
2.4 Floating Offshore Wind Platform (FOWP) Segment by Application
2.4.1 Deep Water
2.4.2 Transitional Water
2.4.3 Shallow Water
2.5 Floating Offshore Wind Platform (FOWP) Sales by Application
2.5.1 Global Floating Offshore Wind Platform (FOWP) Sale Market Share by Application (2018-2023)
2.5.2 Global Floating Offshore Wind Platform (FOWP) Revenue and Market Share by Application (2018-2023)
2.5.3 Global Floating Offshore Wind Platform (FOWP) Sale Price by Application (2018-2023)
3 Global Floating Offshore Wind Platform (FOWP) by Company
3.1 Global Floating Offshore Wind Platform (FOWP) Breakdown Data by Company
3.1.1 Global Floating Offshore Wind Platform (FOWP) Annual Sales by Company (2018-2023)
3.1.2 Global Floating Offshore Wind Platform (FOWP) Sales Market Share by Company (2018-2023)
3.2 Global Floating Offshore Wind Platform (FOWP) Annual Revenue by Company (2018-2023)
3.2.1 Global Floating Offshore Wind Platform (FOWP) Revenue by Company (2018-2023)
3.2.2 Global Floating Offshore Wind Platform (FOWP) Revenue Market Share by Company (2018-2023)
3.3 Global Floating Offshore Wind Platform (FOWP) Sale Price by Company
3.4 Key Manufacturers Floating Offshore Wind Platform (FOWP) Producing Area Distribution, Sales Area, Product Type
3.4.1 Key Manufacturers Floating Offshore Wind Platform (FOWP) Product Location Distribution
3.4.2 Players Floating Offshore Wind Platform (FOWP) Products Offered
3.5 Market Concentration Rate Analysis
3.5.1 Competition Landscape Analysis
3.5.2 Concentration Ratio (CR3, CR5 and CR10) & (2018-2023)
3.6 New Products and Potential Entrants
3.7 Mergers & Acquisitions, Expansion
4 World Historic Review for Floating Offshore Wind Platform (FOWP) by Geographic Region
4.1 World Historic Floating Offshore Wind Platform (FOWP) Market Size by Geographic Region (2018-2023)
4.1.1 Global Floating Offshore Wind Platform (FOWP) Annual Sales by Geographic Region (2018-2023)
4.1.2 Global Floating Offshore Wind Platform (FOWP) Annual Revenue by Geographic Region (2018-2023)
4.2 World Historic Floating Offshore Wind Platform (FOWP) Market Size by Country/Region (2018-2023)
4.2.1 Global Floating Offshore Wind Platform (FOWP) Annual Sales by Country/Region (2018-2023)
4.2.2 Global Floating Offshore Wind Platform (FOWP) Annual Revenue by Country/Region (2018-2023)
4.3 Americas Floating Offshore Wind Platform (FOWP) Sales Growth
4.4 APAC Floating Offshore Wind Platform (FOWP) Sales Growth
4.5 Europe Floating Offshore Wind Platform (FOWP) Sales Growth
4.6 Middle East & Africa Floating Offshore Wind Platform (FOWP) Sales Growth
5 Americas
5.1 Americas Floating Offshore Wind Platform (FOWP) Sales by Country
5.1.1 Americas Floating Offshore Wind Platform (FOWP) Sales by Country (2018-2023)
5.1.2 Americas Floating Offshore Wind Platform (FOWP) Revenue by Country (2018-2023)
5.2 Americas Floating Offshore Wind Platform (FOWP) Sales by Type
5.3 Americas Floating Offshore Wind Platform (FOWP) Sales by Application
5.4 United States
5.5 Canada
5.6 Mexico
5.7 Brazil
6 APAC
6.1 APAC Floating Offshore Wind Platform (FOWP) Sales by Region
6.1.1 APAC Floating Offshore Wind Platform (FOWP) Sales by Region (2018-2023)
6.1.2 APAC Floating Offshore Wind Platform (FOWP) Revenue by Region (2018-2023)
6.2 APAC Floating Offshore Wind Platform (FOWP) Sales by Type
6.3 APAC Floating Offshore Wind Platform (FOWP) Sales by Application
6.4 China
6.5 Japan
6.6 South Korea
6.7 Southeast Asia
6.8 India
6.9 Australia
6.10 China Taiwan
7 Europe
7.1 Europe Floating Offshore Wind Platform (FOWP) by Country
7.1.1 Europe Floating Offshore Wind Platform (FOWP) Sales by Country (2018-2023)
7.1.2 Europe Floating Offshore Wind Platform (FOWP) Revenue by Country (2018-2023)
7.2 Europe Floating Offshore Wind Platform (FOWP) Sales by Type
7.3 Europe Floating Offshore Wind Platform (FOWP) Sales by Application
7.4 Germany
7.5 France
7.6 UK
7.7 Italy
7.8 Russia
8 Middle East & Africa
8.1 Middle East & Africa Floating Offshore Wind Platform (FOWP) by Country
8.1.1 Middle East & Africa Floating Offshore Wind Platform (FOWP) Sales by Country (2018-2023)
8.1.2 Middle East & Africa Floating Offshore Wind Platform (FOWP) Revenue by Country (2018-2023)
8.2 Middle East & Africa Floating Offshore Wind Platform (FOWP) Sales by Type
8.3 Middle East & Africa Floating Offshore Wind Platform (FOWP) Sales by Application
8.4 Egypt
8.5 South Africa
8.6 Israel
8.7 Turkey
8.8 GCC Countries
9 Market Drivers, Challenges and Trends
9.1 Market Drivers & Growth Opportunities
9.2 Market Challenges & Risks
9.3 Industry Trends
10 Manufacturing Cost Structure Analysis
10.1 Raw Material and Suppliers
10.2 Manufacturing Cost Structure Analysis of Floating Offshore Wind Platform (FOWP)
10.3 Manufacturing Process Analysis of Floating Offshore Wind Platform (FOWP)
10.4 Industry Chain Structure of Floating Offshore Wind Platform (FOWP)
11 Marketing, Distributors and Customer
11.1 Sales Channel
11.1.1 Direct Channels
11.1.2 Indirect Channels
11.2 Floating Offshore Wind Platform (FOWP) Distributors
11.3 Floating Offshore Wind Platform (FOWP) Customer
12 World Forecast Review for Floating Offshore Wind Platform (FOWP) by Geographic Region
12.1 Global Floating Offshore Wind Platform (FOWP) Market Size Forecast by Region
12.1.1 Global Floating Offshore Wind Platform (FOWP) Forecast by Region (2024-2029)
12.1.2 Global Floating Offshore Wind Platform (FOWP) Annual Revenue Forecast by Region (2024-2029)
12.2 Americas Forecast by Country
12.3 APAC Forecast by Region
12.4 Europe Forecast by Country
12.5 Middle East & Africa Forecast by Country
12.6 Global Floating Offshore Wind Platform (FOWP) Forecast by Type
12.7 Global Floating Offshore Wind Platform (FOWP) Forecast by Application
13 Key Players Analysis
13.1 Vestas
13.1.1 Vestas Company Information
13.1.2 Vestas Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.1.3 Vestas Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.1.4 Vestas Main Business Overview
13.1.5 Vestas Latest Developments
13.2 General Electric
13.2.1 General Electric Company Information
13.2.2 General Electric Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.2.3 General Electric Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.2.4 General Electric Main Business Overview
13.2.5 General Electric Latest Developments
13.3 BW Ideol
13.3.1 BW Ideol Company Information
13.3.2 BW Ideol Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.3.3 BW Ideol Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.3.4 BW Ideol Main Business Overview
13.3.5 BW Ideol Latest Developments
13.4 Equinor
13.4.1 Equinor Company Information
13.4.2 Equinor Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.4.3 Equinor Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.4.4 Equinor Main Business Overview
13.4.5 Equinor Latest Developments
13.5 Naval Energies
13.5.1 Naval Energies Company Information
13.5.2 Naval Energies Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.5.3 Naval Energies Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.5.4 Naval Energies Main Business Overview
13.5.5 Naval Energies Latest Developments
13.6 Principle Power
13.6.1 Principle Power Company Information
13.6.2 Principle Power Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.6.3 Principle Power Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.6.4 Principle Power Main Business Overview
13.6.5 Principle Power Latest Developments
13.7 Mingyang Smart Energy Group
13.7.1 Mingyang Smart Energy Group Company Information
13.7.2 Mingyang Smart Energy Group Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.7.3 Mingyang Smart Energy Group Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.7.4 Mingyang Smart Energy Group Main Business Overview
13.7.5 Mingyang Smart Energy Group Latest Developments
13.8 Iberdrola
13.8.1 Iberdrola Company Information
13.8.2 Iberdrola Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.8.3 Iberdrola Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.8.4 Iberdrola Main Business Overview
13.8.5 Iberdrola Latest Developments
13.9 Doosan
13.9.1 Doosan Company Information
13.9.2 Doosan Floating Offshore Wind Platform (FOWP) Product Portfolios and Specifications
13.9.3 Doosan Floating Offshore Wind Platform (FOWP) Sales, Revenue, Price and Gross Margin (2018-2023)
13.9.4 Doosan Main Business Overview
13.9.5 Doosan Latest Developments
14 Research Findings and Conclusion
※参考情報 浮体式洋上風力プラットフォーム(FOWP)は、近年注目を集めている再生可能エネルギーの一形態であり、特に風力発電の分野において重要な役割を果たしています。FOWPは、通常の海上風力発電所とは異なり、海面に浮かぶ構造物上に風力タービンを設置する方式です。この技術は、より深い海域においても風力発電を可能にし、陸上や浅海域に比べて多くの利点を提供します。 FOWPの特徴の一つは、その浮体構造です。従来の洋上風力発電所は、一定の深度に基づいて固定された基礎を持つのに対し、FOWPは海面に浮かぶ形で設置されます。この浮体は、さまざまな気候条件や波の影響を受けにくくするための設計がなされており、風力タービンを安定して支えることができます。この特性により、FOWPはより深い水域での設置が可能となり、風力資源の利用範囲を広げることができます。 FOWPの種類は、主に以下の3つに分類されます。第一に、スパー型浮体式プラットフォームです。このタイプは、長いケーブルで海底に固定されており、海中に浮かぶ円筒状の構造を持っています。第二に、テザー型浮体式プラットフォームがあります。これは、海水面上に浮かぶ構造で、複数のテザーによって固定されています。最後に、バラスト型浮体式プラットフォームがあります。このタイプは、重りを利用してバランスを保ち、波や風の影響を受けにくくする設計がなされています。 FOWPの用途はさまざまです。主に風力発電を目的に設計されていますが、これに加えて海水温度差発電や波力発電との組み合わせによるハイブリッドシステムの開発も進められています。特に、風力と波力の組み合わせは、相互のエネルギー供給の安定化に寄与することが期待されています。また、FOWPは陸上電力供給が難しい地域に電力を供給する手段としても利用される可能性があります。 さらに、FOWPは環境への影響が比較的少ないという特徴も持っています。従来の洋上風力発電所に比べ、設置が容易であり、海洋生態系への影響を最小限に抑えることができるため、サステナブルなエネルギー供給の実現に貢献します。具体的には、設置場所の選定を柔軟に行えるため、環境保護区域や漁業活動の影響を受けにくい地域での展開が可能となります。 関連技術についても触れておくと、FOWPの実現には多くの先端技術が関与しています。浮体素材の開発や、風力タービンの効率化、電力伝送技術の向上がその代表例です。また、浮体の安定性を保つための進化した設計手法やシミュレーション技術も重要です。さらに、運用・保守に関連する技術の向上も求められており、遠隔監視やメンテナンスのためのドローン技術なども活用されています。 国際的な市場においても、FOWPはその潜在能力の高さから関心を集めています。特に、欧州諸国やアメリカ、日本などの国々がFOWPの開発に取り組んでおり、それぞれの国の状況に応じた技術開発が行われています。たとえば、ノルウェーなどの北欧諸国では、厳しい気候条件に対応したFOWPの研究が進み、実用化に向けた実証プロジェクトも進行中です。 総じて、浮体式洋上風力プラットフォームは、持続可能なエネルギーの未来において重要な位置を占める技術です。再生可能エネルギーの重要性が高まる中で、FOWPはその可能性を広げ、世界中でのエネルギー問題の解決に向けた新たな道を切り開くことが期待されています。今後の技術発展や国際協力によって、FOWPはますます普及していくことでしょう。これにより、よりクリーンなエネルギー社会の実現が加速され、持続的な発展が促進されることが期待されます。 |
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