4.7 Article

Energy and exergy analysis of an integrated organic Rankine cycle-vapor compression refrigeration system

Journal

APPLIED THERMAL ENGINEERING
Volume 141, Issue -, Pages 697-710

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.applthermaleng.2018.06.018

Keywords

Compression refrigeration cycle; Organic Rankine cycle; Working fluids; Integrated cycles

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In the present study, the performance of an integrated organic Rankine cycle-vapor compression refrigeration (ORC-VCR) system is investigated from the viewpoint of energy and exergy analysis. The system performance was represented by system coefficient of performance (COPs), system exergy efficiency (eta(e,sys)), turbine pressure ratio (TPR), and total mass flow rate of the working fluid for each kW cooling capacity (<(m) over dot>(total)). Many common and new hydrocarbons, hydrofluorocarbons, fluorocarbons, hydrofluoroethers, and hydrofluoroolefins were suggested as working fluids. The influences of various parameters such as the boiler, condenser, and evaporator temperatures, along with compressor and turbine isentropic efficiencies, on the system performance were also investigated. The results revealed that the best system performance was attained with the uppermost critical temperature dry working fluid. Among all suggested candidates, R602 is shown to be the most suitable working fluid for the ORC-VCR system from system performance and environmental issues viewpoints. However, due to its flammability, extra precautions should be taken. The highest COPs, eta(e,sys), TPR, and the corresponding <(m) over dot>(total) using R602 are 0.99, 53.8%, 12.2, and 0.005 kg s(-1) kW(-1), respectively at a condenser temperature of 25 degrees C and the typical values for the rest parameters.

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