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An Experimental Investigation of Organic Rankine Cycle with Scroll Expander for Low-Temperature Heat Sources

IMPACT SIGNAL85/100
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Information from the abstract

Effective utilization of low-grade waste heat remains a significant challenge in sustainable energy recovery. This study presents an experimental investigation of an organic Rankine cycle (ORC) system utilizing R134a as the working fluid, integrated with a scroll expander modified from an electric automotive compressor. The primary objective was to evaluate the system's thermodynamic performance under varying low-temperature heat source conditions (50°C to 90°C) and heat sink temperatures (8°C to 16°C). The experimental results demonstrated that the system performance is heavily dependent on the thermal gradient, which governs the pressure ratio and enthalpy drop. Under the operating condition (evaporating temperature of 90°C and condensing temperature of 8°C), the ORC system generated a maximum electrical power output of 488.55 W. At this peak point, the ORC system achieved a thermal efficiency of 2.61%, with the scroll expander exhibiting a maximum isentropic efficiency of 21.14%. Detailed analysis reveals that the efficiency limitations are primarily attributed to under-expansion losses caused by the mismatch between the system pressure ratio and the expander's fixed built-in volume ratio, compounded by internal leakage. Despite the lower efficiency compared to specifically built expanders, this study confirms the techno-economic feasibility of using low-cost, off-the-shelf automotive components for small-scale decentralized power generation, offering a robust and cost-effective solution for low-grade heat recovery.

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Why this record is monitored

This record has an Impact Signal of 85/100 based on recency, source, collaboration, and bibliographic signals. It prioritizes monitoring and is not a judgment of research quality.

Related topics: Thermodynamic and Exergetic Analyses of Power and Cooling Systems · Refrigeration and Air Conditioning Technologies · Adsorption and Cooling Systems

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Thai researcher and institutional participation

Suppachai Chumnumwat · Sorawit Sonsaree · Chontida Thongdonsa · Supansa Plangklang · Kwanchai Kraitong · Naresuan University · Pibulsongkram Rajabhat University

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Data limitations

This page is a bibliographic record based on abstract-level information, not a full analysis or quality assessment. Verify the DOI and original article before citation.