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Exergetic analysis of an LPG evaporator/regulator with thermal storage

机译:带有储热器的LPG蒸发器/调节器的能量分析

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In this study, the efficiency of an LPG evaporator/regulator (E/R) is investigated on both energy and exergy concept. The E/R, which is a key part of LPG conversion systems that enables gasoline engines to be operated on LPG when desired, has been transformed to a thermal energy storage (TES) system using an adequate amount of phase change material (PCM) to be able to store waste energy of the engine coolant, so that the engine can be operated on LPG rather than gasoline even at cold start to decrease fuel consumption and exhaust emissions. The engine has been tested at idle speed at 4 degrees C environment temperature. The PCM application provided the engine to be operated on LPG at cold start and increased the efficiency of the E/R in a considerable extent on both energy and exergy bases. It was observed that using PCM in the E/R for thermal storage, the net efficiency differences of the E/R with PCM application reach to the values of 20% and 10%, respectively for the energy and exergy calculations. The net 2nd law efficiencies were lower than the ones that of 1st law with the values of about 11% for gasoline operation, and 8% for LPG operation of the engine. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,对液化石油气蒸发器/调节器(E / R)的效率进行了能量和火用概念的研究。 E / R是LPG转换系统的关键部分,可让汽油发动机在需要时在LPG上运行,现已使用足够量的相变材料(PCM)转换为热能存储(TES)系统。能够存储发动机冷却液的废能,因此即使在冷启动时也可以使用LPG而不是汽油来操作发动机,以减少燃料消耗和废气排放。发动机已经在4摄氏度的环境温度下以怠速进行了测试。 PCM应用程序使发动机在冷启动时可以在LPG​​上运行,并且在能量和火用方面都大大提高了E / R的效率。据观察,在E / R中使用PCM进行蓄热时,使用PCM进行E / R的净效率差分别达到20%和10%,用于能量和火用计算。第二定律的净效率低于第一定律的效率,汽油运行约为11%,LPG运行约为8%。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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