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Performances and compactness of a cooling system powered with PEMFC thermal effluent

机译:采用PEMFC热废水驱动的冷却系统的性能和紧凑性

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The thermodynamic study of a small scale cooling system combining an ORC cycle and a refrigeration cycle is carried out. The system includes the same components as those used for ejection cycles except that a combination of a vane compressor and a vane expander replaces the usual ejector. Real fluids properties, efficiencies of the pump, the compressor and the expender and pressure drops are considered. The isentropic efficiency of the expander was measured experimentally and the data were used in the thermodynamic model to simulate the complete system in steady state. The system is designed for operating with a 2 kW heating source at 65 degrees C corresponding to the heat rejected by a domestic PEMFC-type cell and a parametric study assess its performance, compactness and sensitivity when operating at off design. The evaporating temperature varies from -9.5 degrees C to +10.5 degrees C and the condensing temperature varies from 20.1 to 40.1 degrees C. Over the 12 fluids tested here, R1270 appears to be the most promising fluid, providing high performance, good compactness, low environmental nuisance and low off design sensitivity.
机译:进行了将ORC循环和制冷循环相结合的小型冷却系统的热力学研究。该系统包括与用于喷射循环的组件相同的组件,除了叶片压缩机和叶片膨胀器的组合代替了通常的喷射器。考虑了实际的流体特性,泵,压缩机的效率以及消耗器和压降。实验测量了膨胀机的等熵效率,并将数据用于热力学模型中,以模拟整个系统的稳态。该系统设计为在65摄氏度的2 kW热源下运行,这相当于家用PEMFC型电池所排出的热量,并且一项参数研究评估了在非设计模式下运行时的性能,紧凑性和灵敏度。蒸发温度从-9.5摄氏度到+10.5摄氏度,冷凝温度从20.1到40.1摄氏度。在这里测试的12种流体中,R1270似乎是最有前途的流体,提供高性能,良好的致密性,低的对环境的干扰和降低的设计敏感性。

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