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首页> 外文期刊>International Journal of Exergy >Conventional and advanced exergy analyses of an air-conditioning system in a subway station
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Conventional and advanced exergy analyses of an air-conditioning system in a subway station

机译:地铁站空调系统的常规和高级火用分析

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摘要

Air-conditioning systems in subway stations consume a large amount of energy. In this study, conventional and advanced exergy analyses were carried out to determine the energy-saving potential of an air-conditioning system in a subway station. Results show that air handling unit (AHU) should be improved for the highest values of relative irreversibility (RI) with conventional exergy analysis, whereas the compressor should have the highest improvement priority for the largest avoidable exergy destruction with advanced exergy analysis. Moreover, influences of compressor efficiency, condensation temperature, and evaporation temperature on avoidable exergy destruction of the air-conditioning system were also investigated. According to the findings, compressor efficiency significantly influences the system's total avoidable exergy destruction. The lower the compressor efficiency, the more rapidly the avoidable exergy destruction of the compressor increases. Furthermore, the avoidable exergy destruction of condenser, compressor, cooling tower (CT), and cooling water pump (CWP) increases with the rise of the condensation temperature, whereas that of the evaporator, throttling valve (TV), condenser, compressor, CT, and CWP decreases with the rise of the evaporation temperature.
机译:地铁站的空调系统消耗大量能量。在这项研究中,进行了常规和高级火用分析,以确定地铁站中空调系统的节能潜力。结果表明,采用常规的火用分析,应提高空气处理机组(AHU)的相对不可逆性(RI)的最大值,而通过先进的火用分析,压缩机应具有最高的改进优先级,以最大程度地避免可避免的火用破坏。此外,还研究了压缩机效率,冷凝温度和蒸发温度对空调系统可避免的火用破坏的影响。根据调查结果,压缩机效率显着影响了系统可避免的总火用破坏。压缩机效率越低,压缩机可避免的本能破坏增加得越快。此外,随着冷凝温度的升高,冷凝器,压缩机,冷却塔(CT)和冷却水泵(CWP)的可避免的本能破坏增加,而蒸发器,节流阀(TV),冷凝器,压缩机,CT的本能损失却增加了。 ,CWP随着蒸发温度的升高而降低。

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