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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Simulation and performance evaluation of finned-tube CO{sub}2 gas coolers for refrigeration systems
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Simulation and performance evaluation of finned-tube CO{sub}2 gas coolers for refrigeration systems

机译:制冷系统翅片管CO {sub} 2气体冷却器的仿真与性能评估

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摘要

This paper describes a detailed mathematical model and its application for air-cooled finned-tube CO{sub}2 gas coolers. The model has been developed utilizing a distributed method which is necessary to predict accurately the great variation of both refrigerant thermophysical properties and local heat transfer coefficients during CO{sub}2 gas cooling processes. The modelling method also enables performance analyses with different circuit arrangements and changed structure parameters in gas coolers to be assessed. The model has been validated with the test results from a published literature by comparing the gas temperature profiles along the coil pipes from refrigerant inlet to outlet at different operating states. With the aim of increasing the heat capacity or minimizing the approach temperature for a gas cooler, the validated model is used to carry out performance simulation and analysis when the circuit arrangement of the original heat exchanger is redesigned. It is found that the approach temperature and the heat capacity are both improved with the increase of heat exchanger circuit numbers.
机译:本文介绍了一种详细的数学模型及其在风冷翅片管CO {sub} 2气体冷却器中的应用。该模型是使用分布式方法开发的,该模型对于准确预测CO {sub} 2气体冷却过程中制冷剂热物理性质和局部传热系数的巨大变化是必要的。该建模方法还可以评估具有不同电路布置和气体冷却器中结构参数变化的性能分析。通过比较沿不同工作状态下从制冷剂入口到出口的沿盘管的气体温度曲线,该模型已用已发表文献的测试结果进行了验证。为了增加热容量或使气体冷却器的接近温度最小化,当重新设计原始热交换器的电路布置时,使用经过验证的模型进行性能仿真和分析。发现随着热交换器回路数的增加,进场温度和热容量均得到改善。

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