TABLE OF CONTENTS
1. RESEARCH SCOPE & METHODOLOGY
1.1. STUDY OBJECTIVES
1.2. METHODOLOGY
1.3. ASSUMPTIONS & LIMITATIONS
2. EXECUTIVE SUMMARY
2.1. MARKET SIZE & ESTIMATES
2.2. MARKET OVERVIEW
2.3. SCOPE OF STUDY
2.4. CRISIS SCENARIO ANALYSIS
2.4.1. IMPACT OF COVID-19
2.5. MAJOR MARKET FINDINGS
2.5.1. GROWING NUMBER OF RENEWABLE ENERGY PROJECTS
2.5.2. RISE IN TREND FOR OFFSHORE WIND PROJECT
3. MARKET DYNAMICS
3.1. KEY DRIVERS
3.1.1. SURGING DEMAND FOR CLEAN ENERGY
3.1.2. GOVERNMENT INVESTMENTS IN THE ENERGY INDUSTRY
3.2. KEY RESTRAINTS
3.2.1. HIGH PROJECT COSTS
3.2.2. TECHNICAL CHALLENGES INVOLVED IN FLOATING POWER PLANTS
4. KEY ANALYTICS
4.1. ASSESSMENT OF SHIP-BASED FLOATING POWER PLANTS
4.1.1. DEVELOPMENTS RELATED TO SHIP-BASED FLOATING POWER PLANTS
4.2. KEY MARKET TRENDS
4.3. PORTER’S FIVE FORCES ANALYSIS
4.3.1. BUYERS POWER
4.3.2. SUPPLIERS POWER
4.3.3. SUBSTITUTION
4.3.4. NEW ENTRANTS
4.3.5. INDUSTRY RIVALRY
4.4. GROWTH PROSPECT MAPPING
4.5. MARKET MATURITY ANALYSIS
4.6. MARKET CONCENTRATION ANALYSIS
4.7. VALUE CHAIN ANALYSIS
4.7.1. RAW MATERIALS & COMPONENT SUPPLIERS
4.7.2. OEMS
4.7.3. EPC COMPANIES & DEVELOPERS
5. MARKET BY SOURCE
5.1. RENEWABLE POWER SOURCE
5.1.1. MARKET FORECAST FIGURE
5.1.2. SEGMENT ANALYSIS
5.2. NON-RENEWABLE POWER SOURCE
5.2.1. MARKET FORECAST FIGURE
5.2.2. SEGMENT ANALYSIS
6. MARKET BY CAPACITY
6.1. 0 MW- 5 MW
6.1.1. MARKET FORECAST FIGURE
6.1.2. SEGMENT ANALYSIS
6.2. 5.1 MW- 20 MW
6.2.1. MARKET FORECAST FIGURE
6.2.2. SEGMENT ANALYSIS
6.3. 20.1 MW- 100 MW
6.3.1. MARKET FORECAST FIGURE
6.3.2. SEGMENT ANALYSIS
6.4. 100.1 MW- 250 MW
6.4.1. MARKET FORECAST FIGURE
6.4.2. SEGMENT ANALYSIS
6.5. ABOVE 250 MW
6.5.1. MARKET FORECAST FIGURE
6.5.2. SEGMENT ANALYSIS
7. GEOGRAPHICAL ANALYSIS
7.1. NORTH AMERICA
7.1.1. MARKET SIZE & ESTIMATES
7.1.2. NORTH AMERICA FLOATING POWER PLANT MARKET DRIVERS
7.1.3. NORTH AMERICA FLOATING POWER PLANT MARKET CHALLENGES
7.1.4. NORTH AMERICA FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
7.1.5. KEY PLAYERS IN NORTH AMERICA FLOATING POWER PLANT MARKET
7.1.6. COUNTRY ANALYSIS
7.1.6.1. UNITED STATES
7.1.6.1.1. UNITED STATES FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.1.6.2. CANADA
7.1.6.2.1. CANADA FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.2. EUROPE
7.2.1. MARKET SIZE & ESTIMATES
7.2.2. EUROPE FLOATING POWER PLANT MARKET DRIVERS
7.2.3. EUROPE FLOATING POWER PLANT MARKET CHALLENGES
7.2.4. EUROPE FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
7.2.5. KEY PLAYERS IN EUROPE FLOATING POWER PLANT MARKET
7.2.6. COUNTRY ANALYSIS
7.2.6.1. UNITED KINGDOM
7.2.6.1.1. UNITED KINGDOM FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.2.6.2. GERMANY
7.2.6.2.1. GERMANY FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.2.6.3. FRANCE
7.2.6.3.1. FRANCE FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.2.6.4. SPAIN
7.2.6.4.1. SPAIN FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.2.6.5. ITALY
7.2.6.5.1. ITALY FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.2.6.6. REST OF EUROPE
7.2.6.6.1. REST OF EUROPE FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.3. ASIA-PACIFIC
7.3.1. MARKET SIZE & ESTIMATES
7.3.2. ASIA-PACIFIC FLOATING POWER PLANT MARKET DRIVERS
7.3.3. ASIA-PACIFIC FLOATING POWER PLANT MARKET CHALLENGES
7.3.4. ASIA-PACIFIC FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
7.3.5. KEY PLAYERS IN ASIA-PACIFIC FLOATING POWER PLANT MARKET
7.3.6. COUNTRY ANALYSIS
7.3.6.1. CHINA
7.3.6.1.1. CHINA FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.3.6.2. JAPAN
7.3.6.2.1. JAPAN FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.3.6.3. INDIA
7.3.6.3.1. INDIA FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.3.6.4. SOUTH KOREA
7.3.6.4.1. SOUTH KOREA FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.3.6.5. VIETNAM
7.3.6.5.1. VIETNAM FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.3.6.6. AUSTRALIA & NEW ZEALAND
7.3.6.6.1. AUSTRALIA & NEW ZEALAND FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.3.6.7. REST OF ASIA-PACIFIC
7.3.6.7.1. REST OF ASIA-PACIFIC FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.4. REST OF WORLD
7.4.1. MARKET SIZE & ESTIMATES
7.4.2. REST OF WORLD FLOATING POWER PLANT MARKET DRIVERS
7.4.3. REST OF WORLD FLOATING POWER PLANT MARKET CHALLENGES
7.4.4. REST OF WORLD FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
7.4.5. KEY PLAYERS IN REST OF WORLD FLOATING POWER PLANT MARKET
7.4.6. REGIONAL ANALYSIS
7.4.6.1. LATIN AMERICA
7.4.6.1.1. LATIN AMERICA FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
7.4.6.2. MIDDLE EAST & AFRICA
7.4.6.2.1. MIDDLE EAST & AFRICA FLOATING POWER PLANT MARKET SIZE & OPPORTUNITIES
8. COMPETITIVE LANDSCAPE
8.1. KEY STRATEGIC DEVELOPMENTS
8.1.1. MERGERS & ACQUISITIONS
8.1.2. PRODUCT LAUNCHES & DEVELOPMENTS
8.1.3. PARTNERSHIPS & AGREEMENTS
8.1.4. BUSINESS EXPANSIONS & DIVESTITURES
8.2. COMPANY PROFILES
8.2.1. BW IDEOL
8.2.1.1. COMPANY OVERVIEW
8.2.1.2. PRODUCTS LIST
8.2.2. CATERPILLAR INC
8.2.2.1. COMPANY OVERVIEW
8.2.2.2. PRODUCTS LIST
8.2.2.3. STRENGTHS & CHALLENGES
8.2.3. CIEL & TERRE INTERNATIONAL
8.2.3.1. COMPANY OVERVIEW
8.2.3.2. PRODUCTS LIST
8.2.3.3. STRENGTHS & CHALLENGES
8.2.4. FLOATING POWER PLANT A/S
8.2.4.1. COMPANY OVERVIEW
8.2.4.2. PRODUCTS LIST
8.2.4.3. STRENGTHS & CHALLENGES
8.2.5. GENERAL ELECTRIC
8.2.5.1. COMPANY OVERVIEW
8.2.5.2. PRODUCTS LIST
8.2.6. KARPOWERSHIP
8.2.6.1. COMPANY OVERVIEW
8.2.6.2. PRODUCTS LIST
8.2.7. KYOCERA CORPORATION
8.2.7.1. COMPANY OVERVIEW
8.2.7.2. PRODUCTS LIST
8.2.7.3. STRENGTHS & CHALLENGES
8.2.8. MAN ENERGY SOLUTIONS SE
8.2.8.1. COMPANY OVERVIEW
8.2.8.2. PRODUCTS LIST
8.2.9. MITSUBISHI CORPORATION
8.2.9.1. COMPANY OVERVIEW
8.2.9.2. PRODUCTS LIST
8.2.9.3. STRENGTHS & CHALLENGES
8.2.10. SEATWIRL AB
8.2.10.1. COMPANY OVERVIEW
8.2.10.2. PRODUCTS LIST
8.2.10.3. STRENGTHS & CHALLENGES
8.2.11. SIEMENS AG
8.2.11.1. COMPANY OVERVIEW
8.2.11.2. PRODUCTS LIST
8.2.11.3. STRENGTHS & CHALLENGES
8.2.12. UPSOLAR GROUP CO LTD
8.2.12.1. COMPANY OVERVIEW
8.2.12.2. PRODUCTS LIST
8.2.12.3. STRENGTHS & CHALLENGES
8.2.13. VIKRAM SOLAR LIMITED
8.2.13.1. COMPANY OVERVIEW
8.2.13.2. PRODUCTS LIST
8.2.13.3. STRENGTHS & CHALLENGES
8.2.14. WARTSILA CORPORATION
8.2.14.1. COMPANY OVERVIEW
8.2.14.2. PRODUCTS LIST
TABLE 1: MARKET SNAPSHOT – FLOATING POWER PLANT
TABLE 2: GLOBAL FLOATING POWER PLANT MARKET, BY SOURCE, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 3: GLOBAL FLOATING POWER PLANT MARKET, BY SOURCE, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 4: GLOBAL RENEWABLE POWER SOURCE MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 5: GLOBAL RENEWABLE POWER SOURCE MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 6: GLOBAL NON-RENEWABLE POWER SOURCE MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 7: GLOBAL NON-RENEWABLE POWER SOURCE MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 8: GLOBAL FLOATING POWER PLANT MARKET, BY CAPACITY, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 9: GLOBAL FLOATING POWER PLANT MARKET, BY CAPACITY, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 10: GLOBAL 0 MW- 5 MW MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 11: GLOBAL 0 MW- 5 MW MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 12: GLOBAL 5.1 MW- 20 MW MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 13: GLOBAL 5.1 MW- 20 MW MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 14: GLOBAL 20.1 MW- 100 MW MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 15: GLOBAL 20.1 MW- 100 MW MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 16: GLOBAL 100.1 MW- 250 MW MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 17: GLOBAL 100.1 MW- 250 MW MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 18: GLOBAL ABOVE 250 MW MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 19: GLOBAL ABOVE 250 MW MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 20: GLOBAL FLOATING POWER PLANT MARKET, BY GEOGRAPHY, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 21: GLOBAL FLOATING POWER PLANT MARKET, BY GEOGRAPHY, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 22: NORTH AMERICA FLOATING POWER PLANT MARKET, BY COUNTRY, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 23: NORTH AMERICA FLOATING POWER PLANT MARKET, BY COUNTRY, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 24: NORTH AMERICA FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
TABLE 25: KEY PLAYERS OPERATING IN NORTH AMERICA FLOATING POWER PLANT MARKET
TABLE 26: EUROPE FLOATING POWER PLANT MARKET, BY COUNTRY, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 27: EUROPE FLOATING POWER PLANT MARKET, BY COUNTRY, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 28: EUROPE FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
TABLE 29: KEY PLAYERS OPERATING IN EUROPE FLOATING POWER PLANT MARKET
TABLE 30: ASIA-PACIFIC FLOATING POWER PLANT MARKET, BY COUNTRY, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 31: ASIA-PACIFIC FLOATING POWER PLANT MARKET, BY COUNTRY, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 32: ASIA-PACIFIC FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
TABLE 33: KEY PLAYERS OPERATING IN ASIA-PACIFIC FLOATING POWER PLANT MARKET
TABLE 34: REST OF WORLD FLOATING POWER PLANT MARKET, BY REGION, HISTORICAL YEARS, 2018-2022 (IN $ MILLION)
TABLE 35: REST OF WORLD FLOATING POWER PLANT MARKET, BY REGION, FORECAST YEARS, 2023-2028 (IN $ MILLION)
TABLE 36: REST OF WORLD FLOATING POWER PLANT MARKET REGULATORY FRAMEWORK
TABLE 37: KEY PLAYERS OPERATING IN REST OF WORLD FLOATING POWER PLANT MARKET
TABLE 38: LIST OF MERGERS & ACQUISITIONS
TABLE 39: LIST OF PRODUCT LAUNCHES & DEVELOPMENTS
TABLE 40: LIST OF PARTNERSHIPS & AGREEMENTS
TABLE 41: LIST OF BUSINESS EXPANSIONS & DIVESTITURES
| ※参考情報 浮体式発電所(FLOATING POWER PLANT)は、海洋や湖沼などの水面に浮かぶ形で設置される発電施設であり、主に再生可能エネルギー源を利用して電力を生成します。このような概念は、陸上の発電所における土地の制約や環境への影響を軽減するために考案されました。特に、風力発電や太陽光発電が主なエネルギー源として利用されることが多いです。 浮体式発電所の種類には、主に風力発電、太陽光発電、波力発電などがあります。浮体式風力発電は、海上の風の強さや出力の安定性を活かすことができるため、特に注目されています。通常、浮体式風力発電機は、浮体構造物の上に風車が設置され、その下にはアンカーによって固定されています。この構造により、深海でも設置可能であり、風力エネルギーを効率よく活用できるのです。 また、浮体式太陽光発電は、水面に浮かぶプラットフォーム上に太陽光パネルを設置することで、日光からのエネルギーを捕集します。この方式のメリットは、土地を消費せず、しかも水の蒸発を抑えたり、藻の繁殖を防ぐ効果がある点です。さらに、冷却効果が得られるため、太陽光パネルの発電効率が向上することもあります。 浮体式波力発電は、波の動きを利用してエネルギーを生成します。海面の波が浮体に作用し、その運動を電力に変換する仕組みです。この技術は、波の特性を活かすため、その場所における波の動きの分析が重要となります。波力発電は、規則正しい波を持つ地域で特に効率的に機能します。 浮体式発電所の用途には、都市の電力供給や、離島地域へのエネルギー供給などがあります。特に、離れた場所への電力供給が求められる場合において、浮体式発電所は有効な選択肢となります。また、発電した電力を陸上の電力網に接続することで、持続可能なエネルギー供給が可能になるのです。 関連技術としては、浮体構造物の設計や建設技術が挙げられます。浮体式発電所は、波や風の影響を受けるため、耐久性や安定性を考慮した設計が必要です。このため、最新の材料科学や工学が活用されており、より軽量で強度の高い構造物が求められています。 さらに、電力の変換技術も重要な要素です。浮体式発電所で得られた電力は、船舶などの移動手段に使われることもありますが、陸上の電力網に接続するためには、適切な電圧や周波数に変換する必要があります。そのため、軽量かつ高効率な変換装置の開発が進められています。 浮体式発電所は、再生可能エネルギーを大規模に活用できることから、環境負荷の軽減にも寄与する期待があります。また、気候変動への対策として、化石燃料からの脱却を図る取り組みが進む中で、浮体式発電所は持続可能なエネルギー供給の一翼を担う存在となるでしょう。 将来的には、さらに多様なエネルギー源を組み合わせたハイブリッド型の浮体式発電所の可能性も考えられています。たとえば、浮体式風力発電と太陽光発電を同時に行うことで、発電の安定性や効率を向上させることが可能です。 このように、浮体式発電所は先進的な技術と再生可能エネルギーの融合により、環境に優しいエネルギー供給の新たな形を提案しています。今後の発展が期待される分野であり、技術革新や導入が進むことで、持続可能な社会の実現に向けた重要な役割を果たすと考えられています。 |
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