1. Global Market – Executive Summary
1.1. Global Market Overview
1.2. Demand Side Trends
1.3. Supply Side Trends
1.4. Fact.MR Analysis and Recommendations
2. Global Market Overview
2.1. Market Coverage / Taxonomy
2.2. Market Introduction and Definition
3. Market Risks and Trends Assessment
3.1. Risk Assessment
3.1.1. COVID-19 Crisis and Impact on
3.1.2. COVID-19 Crisis and Impact on Aprotic Solvent Prices
3.1.3. COVID-19 Impact Benchmark with Previous Crisis
3.1.3.1. Change in Demand
3.1.3.2. Before and After COVID-19 Crisis (Projected)
3.1.3.3. Before and After Sub-prime Crisis – 2008 (Actual)
3.1.3.4. Change in Demand post Recovery Period (After Each Crisis)
3.1.4. Impact on Market and Value (US$ Mn)
3.1.4.1. Likely Loss of Value in 2022
3.1.4.2. Mid-term and Long Term Forecast
3.1.4.3. Quarter by Quarter Demand and Recovery Assessment
3.1.5. Anticipated Demand and Value Recovery Curve
3.1.5.1. Likelihood of U-Shape Recovery
3.1.5.2. Likelihood of L-Shape Recovery
3.1.6. Recovery Period Assessment by Key Countries
3.1.7. Recovery Assessment by Key Market Segments
3.1.8. Action Points and Recommendations for Suppliers
3.1.9. Impact on Trade Balance
3.2. Key Trends Impacting the Market
3.3. Formulation and Source Development Trends
4. Market Background and foundation Data Points
4.1. Need of the Hour for Industries
4.2. Industry Wise Industry 4.0
4.3. Strategic Priorities
4.4. Life Cycle Stage
4.5. Importance of Technology
4.6. Use Cases of Geothermal Energy
4.7. Forecast Factors: Relevance and Impact
4.8. Investment Feasibility Matrix
4.9. PESTLE Analysis
4.10. Porter’s Five Forces Analysis
4.11. Market Dynamics
4.11.1. Drivers
4.11.2. Restraints
4.11.3. Opportunity Analysis
4.11.4. Trend
5. Global Market Demand (US$ Mn) Analysis 2018 to 2022 and Forecast, 2023 to 2033
5.1. Historical Market Value (US$ Mn) Analysis, 2018 to 2022
5.2. Current and Future Market Value (US$ Mn) Projections, 2023 to 2033
5.2.1. Y-o-Y Growth Trend Analysis
5.2.2. Absolute $ Opportunity Analysis
6. Global Market Analysis 2018 to 2022 and Forecast 2023 to 2033, By Power Station Type
6.1. Introduction / Key Findings
6.2. Historical Market Value (US$ Mn) Analysis By Power Station Type, 2018 to 2022
6.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Power Station Type, 2023 to 2033
6.3.1. Binary Cycle Power Stations
6.3.2. Flash Steam Power Stations
6.3.3. Dry Steam Power Stations
6.4. Market Attractiveness Analysis By Power Station Type
7. Global Market Analysis 2018 to 2022 and Forecast 2023 to 2033, by Power Output
7.1. Introduction / Key Findings
7.2. Historical Market Value (US$ Mn) Analysis By Power Output, 2018 to 2022
7.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Power Output, 2023 to 2033
7.3.1. Up to 5 MW
7.3.2. Above 5 MW
7.4. Market Attractiveness Analysis By Power Output
8. Global Market Analysis 2018 to 2022 and Forecast 2023 to 2033, by End Use
8.1. Introduction / Key Findings
8.2. Historical Market Value (US$ Mn) Analysis By End Use, 2018 to 2022
8.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By End Use, 2023 to 2033
8.3.1. Industrial
8.3.2. Residential
8.3.3. Commercial
8.4. Market Attractiveness Analysis By End Use
9. Global Market Analysis 2018 to 2022 and Forecast 2023 to 2033, by Region
9.1. Introduction / Key Findings
9.2. Historical Market Value (US$ Mn) Analysis By Region, 2018 to 2022
9.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Region, 2023 to 2033
9.3.1. North America
9.3.2. Latin America
9.3.3. Europe
9.3.4. East Asia
9.3.5. South Asia & Oceania
9.3.6. Middle East and Africa (MEA)
9.4. Market Attractiveness Analysis By Region
10. North America Market Analysis 2018 to 2022 and Forecast 2023 to 2033
10.1. Introduction / Key Findings
10.2. Historical Market Value (US$ Mn) Trend Analysis By Market Taxonomy, 2018 to 2022
10.3. Market Value (US$ Mn) Forecast By Market Taxonomy, 2023 to 2033
10.3.1. By Country
10.3.1.1. United States
10.3.1.2. Canada
10.3.2. By Power Station Type
10.3.3. By Power Output
10.4. Market Attractiveness Analysis
10.4.1. By Country
10.4.2. By Power Station Type
10.4.3. By Power Output
11. Latin America Market Analysis 2018 to 2022 and Forecast 2023 to 2033
11.1. Introduction / Key Findings
11.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018 to 2022
11.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Region, 2023 to 2033
11.3.1. By Country
11.3.1.1. Brazil
11.3.1.2. Mexico
11.3.1.3. Rest of Latin America
11.3.2. By Power Station Type
11.3.3. By Power Output
11.3.4. By End Use
11.4. Market Attractiveness Analysis
11.4.1. By Country
11.4.2. By Power Station Type
11.4.3. By Power Output
11.4.4. By End Use
12. Europe Market Analysis 2018 to 2022 and Forecast 2023 to 2033
12.1. Introduction / Key Findings
12.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018 to 2022
12.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Region, 2023 to 2033
12.3.1. By Country
12.3.1.1. Germany
12.3.1.2. France
12.3.1.3. Italy
12.3.1.4. Spain
12.3.1.5. United Kingdom
12.3.1.6. BENELUX
12.3.1.7. Russia
12.3.1.8. Rest of Europe
12.3.2. By Power Station Type
12.3.3. By Power Output
12.3.4. By End Use
12.4. Market Attractiveness Analysis
12.4.1. By Country
12.4.2. By Power Station Type
12.4.3. By Power Output
12.4.4. By End Use
13. East Asia Market Analysis 2018 to 2022 and Forecast 2023 to 2033
13.1. Introduction / Key Findings
13.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018 to 2022
13.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Region, 2023 to 2033
13.3.1. By Country
13.3.1.1. China
13.3.1.2. Japan
13.3.1.3. South Korea
13.3.2. By Power Station Type
13.3.3. By Power Output
13.3.4. By End Use
13.4. Market Attractiveness Analysis
13.4.1. By Country
13.4.2. By Power Station Type
13.4.3. By Power Output
13.4.4. By End Use
14. South Asia & Oceania Market Analysis 2018 to 2022 and Forecast 2023 to 2033
14.1. Introduction / Key Findings
14.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018 to 2022
14.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Region, 2023 to 2033
14.3.1. By Country
14.3.1.1. India
14.3.1.2. Thailand
14.3.1.3. Malaysia
14.3.1.4. Singapore
14.3.1.5. Vietnam
14.3.1.6. ANZ
14.3.1.7. Rest of South Asia & Oceania
14.3.2. By Power Station Type
14.3.3. By Power Output
14.3.4. By End Use
14.4. Market Attractiveness Analysis
14.4.1. By Country
14.4.2. By Power Station Type
14.4.3. By Power Output
14.4.4. By End Use
15. Middle East and Africa Market Analysis 2018 to 2022 and Forecast 2023 to 2033
15.1. Introduction / Key Findings
15.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018 to 2022
15.3. Current and Future Market Value (US$ Mn) Analysis and Forecast By Region, 2023 to 2033
15.3.1. By Country
15.3.1.1. GCC Countries
15.3.1.2. South Africa
15.3.1.3. Israel
15.3.1.4. Rest of Middle East and Africa (MEA)
15.3.2. By Power Station Type
15.3.3. By Power Output
15.3.4. By End Use
15.4. Market Attractiveness Analysis
15.4.1. By Country
15.4.2. By Power Station Type
15.4.3. By Power Output
15.4.4. By End Use
16. Market Structure Analysis
16.1. Market Analysis by Tier of Companies
16.2. Market Concentration
16.3. Market Share Analysis of Top Players
16.4. Market Presence Analysis
17. Competition Analysis
17.1. Competition Dashboard
17.2. Competition Benchmarking
17.3. Competition Deep Dive
17.3.1. Tetra Tech, Inc.
17.3.1.1. Company Overview
17.3.1.2. Source overview
17.3.1.3. SWOT Analysis
17.3.1.4. Key Developments
17.3.2. Ormat Technologies, Inc.
17.3.2.1. Company Overview
17.3.2.2. Source overview
17.3.2.3. SWOT Analysis
17.3.2.4. Key Developments
17.3.3. Engie SA
17.3.3.1. Company Overview
17.3.3.2. Source overview
17.3.3.3. SWOT Analysis
17.3.3.4. Key Developments
17.3.4. Mitsubishi Power, Ltd.
17.3.4.1. Company Overview
17.3.4.2. Source overview
17.3.4.3. SWOT Analysis
17.3.5. Key Developments
17.3.5.1. Company Overview
17.3.5.2. Source overview
17.3.5.3. SWOT Analysis
17.3.5.4. Key Developments
17.3.6. First Gen Corporation
17.3.6.1. Company Overview
17.3.6.2. Source overview
17.3.6.3. SWOT Analysis
17.3.7. Key Developments
17.3.7.1. Company Overview
17.3.7.2. Source overview
17.3.7.3. SWOT Analysis
17.3.7.4. Key Developments
17.3.8. Calpine
17.3.8.1. Company Overview
17.3.8.2. Source overview
17.3.8.3. SWOT Analysis
17.3.8.4. Key Developments
17.3.9. Gradient Resources
17.3.9.1. Company Overview
17.3.9.2. Source overview
17.3.9.3. SWOT Analysis
17.3.9.4. Key Developments
17.3.10. EthosEnergy
17.3.10.1. Company Overview
17.3.10.2. Source overview
17.3.10.3. SWOT Analysis
17.3.10.4. Key Developments
17.3.11. Toshiba International Corporation
17.3.11.1. Company Overview
17.3.11.2. Source overview
17.3.11.3. SWOT Analysis
17.3.11.4. Key Developments
17.3.12. Chevron
17.3.12.1. Company Overview
17.3.12.2. Source overview
17.3.12.3. SWOT Analysis
17.3.12.4. Key Developments
18. Assumptions And Acronyms Used
19. Research Methodology
Table 1: Global Market Value (US$ Mn) Analysis, by Power Station Type, 2018 to 2022Table 2: Global Market Value (US$ Mn) Analysis, by Power Station Type, 2023 to 2033
Table 3: Global Market Value (US$ Mn) Opportunity Analysis, by Power Station Type, 2023 to 2033
Table 4: Global Market Value (US$ Mn) Analysis, by Power Output, 2018 to 2022
Table 5: Global Market Value (US$ Mn) Analysis, by Power Output, 2023 to 2033
Table 6: Global Market Value (US$ Mn) Opportunity Analysis, by Power Output, 2023 to 2033
Table 7: Global Market Value (US$ Mn) Analysis, by End Use, 2018 to 2022
Table 8: Global Market Value (US$ Mn) Analysis, by End Use, 2023 to 2033
Table 9: Global Market Value (US$ Mn) Opportunity Analysis, by End Use, 2023 to 2033
Table 10: Global Market Value (US$ Mn) Analysis, by Region, 2018 to 2022
Table 11: Global Market Value (US$ Mn) Analysis, by Region, 2023 to 2033
Table 12: Global Market Value (US$ Mn) Opportunity Analysis, by Region, 2023 to 2033
Table 13: North America Market Value (US$ Mn) Analysis, by Country, 2018 to 2022
Table 14: North America Market Value (US$ Mn) Analysis, by Country, 2023 to 2033
Table 15: North America Market Value (US$ Mn) Opportunity Analysis, by Country, 2023 to 2033
Table 16: North America Market Value (US$ Mn) Analysis, by Power Station Type, 2018 to 2022
Table 17: North America Market Value (US$ Mn) Analysis, by Power Station Type, 2023 to 2033
Table 18: North America Market Value (US$ Mn) Opportunity Analysis, by Power Station Type, 2023 to 2033
Table 19: North America Market Value (US$ Mn) Analysis, by Power Output, 2018 to 2022
Table 20: North America Market Value (US$ Mn) Analysis, by Power Output, 2023 to 2033
Table 21: North America Market Value (US$ Mn) Opportunity Analysis, by Power Output, 2023 to 2033
Table 22: North America Market Value (US$ Mn) Analysis, by End Use, 2018 to 2022
Table 23: North America Market Value (US$ Mn) Analysis, by End Use, 2023 to 2033
Table 24: North America Market Value (US$ Mn) Opportunity Analysis, by End Use, 2023 to 2033
Table 25: Latin America Market Value (US$ Mn) Analysis, by Country, 2018 to 2022
Table 26: Latin America Market Value (US$ Mn) Analysis, by Country, 2023 to 2033
Table 27: Latin America Market Value (US$ Mn) Opportunity Analysis, by Country, 2023 to 2033
Table 28: Latin America Market Value (US$ Mn) Analysis, by Power Station Type, 2018 to 2022
Table 29: Latin America Market Value (US$ Mn) Analysis, by Power Station Type, 2023 to 2033
Table 30: Latin America Market Value (US$ Mn) Opportunity Analysis, by Power Station Type, 2023 to 2033
Table 31: Latin America Market Value (US$ Mn) Analysis, by Power Output, 2018 to 2022
Table 32: Latin America Market Value (US$ Mn) Analysis, by Power Output, 2023 to 2033
Table 33: Latin America Market Value (US$ Mn) Opportunity Analysis, by Power Output, 2023 to 2033
Table 34: Latin America Market Value (US$ Mn) Analysis, by End Use, 2018 to 2022
Table 35: Latin America Market Value (US$ Mn) Analysis, by End Use, 2023 to 2033
Table 36: Latin America Market Value (US$ Mn) Opportunity Analysis, by End Use, 2023 to 2033
Table 37: Europe Market Value (US$ Mn) Analysis, by Country, 2018 to 2022
Table 38: Europe Market Value (US$ Mn) Analysis, by Country, 2023 to 2033
Table 39: Europe Market Value (US$ Mn) Opportunity Analysis, by Country, 2023 to 2033
Table 40: Europe Market Value (US$ Mn) Analysis, by Power Station Type, 2018 to 2022
Table 41: Europe Market Value (US$ Mn) Analysis, by Power Station Type, 2023 to 2033
Table 42: Europe Market Value (US$ Mn) Opportunity Analysis, by Power Station Type, 2023 to 2033
Table 43: Europe Market Value (US$ Mn) Analysis, by Power Output, 2018 to 2022
Table 44: Europe Market Value (US$ Mn) Analysis, by Power Output, 2023 to 2033
Table 45: Europe Market Value (US$ Mn) Opportunity Analysis, by Power Output, 2023 to 2033
Table 46: Europe Market Value (US$ Mn) Analysis, by End Use, 2018 to 2022
Table 47: Europe Market Value (US$ Mn) Analysis, by End Use, 2023 to 2033
Table 48: Europe Market Value (US$ Mn) Opportunity Analysis, by End Use, 2023 to 2033
Table 49: East Asia Market Value (US$ Mn) Analysis, by Country, 2018 to 2022
Table 50: East Asia Market Value (US$ Mn) Analysis, by Country, 2023 to 2033
Table 51: East Asia Market Value (US$ Mn) Opportunity Analysis, by Country, 2023 to 2033
Table 52: East Asia Market Value (US$ Mn) Analysis, by Power Station Type, 2018 to 2022
Table 53: East Asia Market Value (US$ Mn) Analysis, by Power Station Type, 2023 to 2033
Table 54: East Asia Market Value (US$ Mn) Opportunity Analysis, by Power Station Type, 2023 to 2033
Table 55: East Asia Market Value (US$ Mn) Analysis, by Power Output, 2018 to 2022
Table 56: East Asia Market Value (US$ Mn) Analysis, by Power Output, 2023 to 2033
Table 57: East Asia Market Value (US$ Mn) Opportunity Analysis, by Power Output, 2023 to 2033
Table 58: East Asia Market Value (US$ Mn) Analysis, by End Use, 2018 to 2022
Table 59: East Asia Market Value (US$ Mn) Analysis, by End Use, 2023 to 2033
Table 60: East Asia Market Value (US$ Mn) Opportunity Analysis, by End Use, 2023 to 2033
Table 61: South Asia & Oceania Market Value (US$ Mn) Analysis, by Country, 2018 to 2022
Table 62: South Asia & Oceania Market Value (US$ Mn) Analysis, by Country, 2023 to 2033
Table 63: South Asia & Oceania Market Value (US$ Mn) Opportunity Analysis, by Country, 2023 to 2033
Table 64: South Asia & Oceania Market Value (US$ Mn) Analysis, by Power Station Type, 2018 to 2022
Table 65: South Asia & Oceania Market Value (US$ Mn) Analysis, by Power Station Type, 2023 to 2033
Table 66: South Asia & Oceania Market Value (US$ Mn) Opportunity Analysis, by Power Station Type, 2023 to 2033
Table 67: South Asia & Oceania Market Value (US$ Mn) Analysis, by Power Output, 2018 to 2022
Table 68: South Asia & Oceania Market Value (US$ Mn) Analysis, by Power Output, 2023 to 2033
Table 69: South Asia & Oceania Market Value (US$ Mn) Opportunity Analysis, by Power Output, 2023 to 2033
Table 70: South Asia & Oceania Market Value (US$ Mn) Analysis, by End Use, 2018 to 2022
Table 71: South Asia & Oceania Market Value (US$ Mn) Analysis, by End Use, 2023 to 2033
Table 72: South Asia & Oceania Market Value (US$ Mn) Opportunity Analysis, by End Use, 2023 to 2033
Table 73: MEA Market Value (US$ Mn) Analysis, by Country, 2018 to 2022
Table 74: MEA Market Value (US$ Mn) Analysis, by Country, 2023 to 2033
Table 75: MEA Market Value (US$ Mn) Opportunity Analysis, by Country, 2023 to 2033
Table 76: MEA Market Value (US$ Mn) Analysis, by Power Station Type, 2018 to 2022
Table 77: MEA Market Value (US$ Mn) Analysis, by Power Station Type, 2023 to 2033
Table 78: MEA Market Value (US$ Mn) Opportunity Analysis, by Power Station Type, 2023 to 2033
Table 79: MEA Market Value (US$ Mn) Analysis, by Power Output, 2018 to 2022
Table 80: MEA Market Value (US$ Mn) Analysis, by Power Output, 2023 to 2033
Table 81: MEA Market Value (US$ Mn) Opportunity Analysis, by Power Output, 2023 to 2033
Table 82: MEA Market Value (US$ Mn) Analysis, by End Use, 2018 to 2022
Table 83: MEA Market Value (US$ Mn) Analysis, by End Use, 2023 to 2033
Table 84: MEA Market Value (US$ Mn) Opportunity Analysis, by End Use, 2023 to 2033
| ※参考情報 地熱エネルギーとは、地球内部から供給される熱エネルギーのことを指します。地熱は地球の中心部から放射される熱や、地下に存在するマグマ、地熱水などによって得られる自然エネルギーであり、持続可能なエネルギー源として注目されています。このエネルギーは地球の内部に蓄積された熱を利用するため、二酸化炭素の排出が少なく、環境に優しいエネルギー源とされています。 地熱エネルギーにはいくつかの種類があります。まず、温泉や地熱発電を利用する「高温地熱」と、温水や蒸気を得るために利用する「低温地熱」に大別できます。高温地熱は、マグマに近い場所に存在し、温度が約150度以上の地熱資源を指します。この場合、蒸気を直接利用してタービンを回し発電することが可能です。一方、低温地熱は温度が低く、地温があまり高くない地域でも利用できるもので、温泉や暖房、農業への利用が考えられます。 地熱エネルギーは、さまざまな用途に活用されています。まず、発電に関しては、高温地熱地帯で設置される発電所があります。これらの発電所では、地下の地熱水や蒸気を取り出し、タービンを回して電気を生み出します。また、地熱発電は連続したエネルギー供給が可能で、基幹電力として重要な役割を果たします。さらに、低温地熱は暖房用途にも利用され、特に冬場の暖房や湯沸かしに役立っています。温泉資源としても利用されることが多く、観光業にも寄与しています。 関連技術には、蒸気発電技術や地下水位の管理技術、地熱ポンプ技術などがあります。蒸気発電技術は、蒸気タービンを用いて電気を生成する技術です。地熱発電所では、地中から取り出した蒸気を直接タービンに通して発電します。地下水位の管理技術は、地熱エネルギーを安定的に取得するために重要です。地下水位を適切に管理することで、過剰な抽出による地盤沈下や水の枯渇を防ぐことができます。地熱ポンプ技術は、地下の熱を利用して暖房や冷房を行うもので、主に低温地熱を利用します。この技術は、家庭やビルの暖房・冷房システムとして普及しています。 また、地熱エネルギーの開発についても様々な取り組みが進められています。日本においては、地熱エネルギーは古くから温泉として利用されてきましたが、電力供給に利用する試みも進められています。その中には、発電所の設置や新たな資源の探索技術の開発が含まれます。さらに、地熱リソースの持続的利用のため、環境保護や地域社会への配慮も重要な課題とされています。 地熱エネルギーの利点としては、持続可能性や環境への配慮が挙げられます。天候や季節に左右されず安定的にエネルギーを供給できることから、火力発電や太陽光発電と比べて安定性があります。発電に伴う温室効果ガスの排出が極めて少なく、クリーンなエネルギー源として評価されています。 一方で、地熱エネルギーの利用には課題も存在します。地下資源の過剰利用による温度低下や水資源の枯渇、発電所周辺の環境への影響や地震誘発のリスクが懸念されています。これらの課題に対処するため、技術の進歩や規制の整備が求められています。 地熱エネルギーは再生可能エネルギーの一つとして、将来的にますます重要な役割を果たすことが期待されます。地熱資源を効率的に活用し、持続可能な社会の実現に向けた取り組みが進むことで、クリーンエネルギーの普及が一層広がることが期待されています。これからも、地熱エネルギーを新たな視点から探索し、持続可能な社会の実現に貢献していくことが重要です。 |
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