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市場調查報告書
商品編碼
1489106
全球有機朗肯循環市場研究報告 - 2024 年至 2032 年產業分析、規模、佔有率、成長、趨勢與預測Global Organic Rankine Cycle Market Research Report - Industry Analysis, Size, Share, Growth, Trends and Forecast 2024 to 2032 |
全球有機朗肯循環市場需求預計將從 2023 年的 8.3559 億美元達到近 10.0657 億美元的市場規模,2024-2032 年研究期間複合年成長率為 2.09%。
有機朗肯循環(ORC)是一種熱力學過程,用於利用有機工質的汽化和冷凝從低溫到中溫熱源發電。與蒸汽發電廠中使用的傳統朗肯循環一樣,ORC 在閉迴路系統中運行,其中工作流體被泵送、汽化、通過渦輪機膨脹以產生機械功,然後凝結成液體形式以重複該循環。 ORC 系統通常用於再生能源應用,例如地熱發電廠、生質能燃燒、廢熱回收和太陽能熱系統,以高效、永續地將熱量轉換為電能。
對再生能源和廢熱回收的日益關注推動了 ORC 系統的採用,作為在各種工業流程和應用中將低溫熱能轉化為電力的高效且永續的解決方案。隨著各行業尋求提高能源效率、減少排放和降低營運成本,對ORC 系統的需求不斷成長,這些系統提供靈活且可擴展的發電解決方案,以捕獲和利用來自廢氣、製程流體和廢水等來源的廢熱流。此外,ORC 技術的進步,例如改進的有機工作流體、增強的熱交換器設計和先進的控制系統,透過提供最佳化性能、可靠性和成本效益的解決方案來滿足客戶需求和監管要求,推動有機朗肯循環市場的成長。
此外,在分散式發電、熱電聯產和熱電聯產(CHP) 應用中擴大採用ORC 系統,透過提供分散式現場能源解決方案來增強工業、商業的能源安全、彈性和永續性,從而推動有機朗肯循環市場的擴張。此外,人們對用於再生能源整合、電網穩定和儲能應用的ORC 系統日益成長的興趣為市場參與者創造了創新和開發ORC 解決方案的機會,從而有助於向低碳能源未來的過渡。然而,廢熱回收技術的進步或向再生能源的轉變可能會挑戰有機朗肯循環市場的成長。
研究報告涵蓋波特五力模型、市場吸引力分析和價值鏈分析。這些工具有助於清晰地了解行業結構並評估全球範圍內的競爭吸引力。此外,這些工具還對有機朗肯循環全球市場的每個細分市場進行了包容性評估。有機朗肯循環產業的成長和趨勢為本研究提供了整體方法。
有機朗肯循環市場報告的這一部分提供了有關國家和區域級別細分市場的詳細資料,從而幫助策略師確定相應產品或服務的目標人口統計數據以及即將到來的機會。
本節涵蓋區域前景,重點介紹北美、歐洲、亞太地區、拉丁美洲以及中東和非洲有機朗肯循環市場當前和未來的需求。此外,該報告重點關注所有主要地區各個應用領域的需求、估計和預測。
該研究報告還涵蓋了市場主要參與者的全面概況以及對全球競爭格局的深入了解。有機朗肯循環市場的主要參與者包括 Turboden SPA、Exergy International Srl、浙江開山壓縮機有限公司、Enogia SAS、Triogen、Calnetix Technologies LLC、ABB、Atlas Copco AB、TAS Energy Inc. (TAS)、Elvosolar、 AS本節包含競爭格局的整體視圖,包括各種策略發展,例如關鍵併購、未來產能、合作夥伴關係、財務概覽、合作、新產品開發、新產品發布和其他發展。
如果您有任何客製化要求,請寫信給我們。我們的研究團隊可以根據您的需求提供客製化報告。
The global demand for Organic Rankine Cycle Market is presumed to reach the market size of nearly USD 1006.57 Million by 2032 from USD 835.59 Million in 2023 with a CAGR of 2.09% under the study period 2024-2032.
The organic Rankine cycle (ORC) is a thermodynamic process used to generate electricity from low- to medium-temperature heat sources by exploiting the vaporization and condensation of an organic working fluid. Like the conventional Rankine cycle used in steam power plants, the ORC operates in a closed-loop system where the working fluid is pumped, vaporized, expanded through a turbine to produce mechanical work, and then condensed into liquid form to repeat the cycle. ORC systems are commonly used in renewable energy applications such as geothermal power plants, biomass combustion, waste heat recovery, and solar thermal systems to convert heat into electricity efficiently and sustainably.
The increasing focus on renewable energy sources and waste heat recovery drives the adoption of ORC systems as efficient and sustainable solutions for converting low-temperature heat into electricity in various industrial processes and applications. As industries seek to improve energy efficiency, reduce emissions, and lower operating costs, there is a growing demand for ORC systems that offer flexible and scalable power generation solutions to capture and utilize waste heat streams from sources such as exhaust gases, process fluids, and geothermal reservoirs. Moreover, advancements in ORC technology, such as improved organic working fluids, enhanced heat exchanger designs, and advanced control systems, drive organic Rankine cycle market growth by offering solutions that optimize performance, reliability, and cost-effectiveness to meet customer needs and regulatory requirements.
Additionally, the increasing adoption of ORC systems in distributed power generation, cogeneration, and combined heat and power (CHP) applications drives organic Rankine cycle market expansion by offering decentralized and onsite energy solutions that enhance energy security, resilience, and sustainability for industrial, commercial, and residential users. Furthermore, the growing interest in ORC systems for renewable energy integration, grid stabilization, and energy storage applications creates opportunities for market players to innovate and develop ORC solutions that contribute to the transition towards a low-carbon energy future. However, advancements in waste heat recovery technologies or shifts towards renewable energy may challenge the organic Rankine cycle market growth.
The research report covers Porter's Five Forces Model, Market Attractiveness Analysis, and Value Chain analysis. These tools help to get a clear picture of the industry's structure and evaluate the competition attractiveness at a global level. Additionally, these tools also give an inclusive assessment of each segment in the global market of Organic Rankine Cycle. The growth and trends of Organic Rankine Cycle industry provide a holistic approach to this study.
This section of the Organic Rankine Cycle market report provides detailed data on the segments at country and regional level, thereby assisting the strategist in identifying the target demographics for the respective product or services with the upcoming opportunities.
This section covers the regional outlook, which accentuates current and future demand for the Organic Rankine Cycle market across North America, Europe, Asia-Pacific, Latin America, and Middle East & Africa. Further, the report focuses on demand, estimation, and forecast for individual application segments across all the prominent regions.
The research report also covers the comprehensive profiles of the key players in the market and an in-depth view of the competitive landscape worldwide. The major players in the Organic Rankine Cycle market include Turboden S.P.A., Exergy International Srl, Zhejiang Kaishan Compressor Co. Ltd., Enogia SAS, Triogen, Calnetix Technologies LLC, ABB, Atlas Copco AB, TAS Energy Inc. (TAS), Elvosolar, A.S. This section consists of a holistic view of the competitive landscape that includes various strategic developments such as key mergers & acquisitions, future capacities, partnerships, financial overviews, collaborations, new product developments, new product launches, and other developments.
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