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首页> 外文期刊>Science and Technology for the Built Environment >Transient behavior of CO2 in the internal heat exchanger during the start-up of the transcritical refrigeration system
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Transient behavior of CO2 in the internal heat exchanger during the start-up of the transcritical refrigeration system

机译:跨临界制冷系统启动期间CO2在内部热交换器中的瞬态行为

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摘要

Transient behavior of internal heat exchanger during start-up of transcritical refrigeration system is investigated in this article. The work is focused on the local transient analysis of CO2 thermophysical properties, in order to see how these transient changes affect the heat transfer rate and the effectiveness of internal heat exchanger, as well as the coefficient of performance during the start-up of the system. The study is conducted through a numerical simulation using the commercial computational fluid dynamics (CFD) software Ansys Fluent. Validation of numerical results is carried out by using seven different empirical correlations applied for the Nusselt number. It is observed that the thermophysical properties of the hot CO2 stream experience large changes during the transient period. This instability is accompanied by a decrease in the heat transfer rate. Finally, the change in the internal heat exchanger effectiveness during the start-up results in a loss of about 12% of the coefficient of performance.
机译:本文研究了跨临界制冷系统启动期间内部热交换器的瞬态行为。该作品专注于CO2热物理特性的局部瞬态分析,以便看到这些瞬态变化如何影响传热速率和内部热交换器的有效性,以及系统启动期间的性能系数。该研究是通过使用商业计算流体动力学(CFD)软件ANSYS流畅的数值模拟进行的。通过使用施加氮素数的七种不同的经验相关性来执行数值结果的验证。观察到,热CO2流的热理性质在瞬态时段期间经历大的变化。这种不稳定性伴随着传热速率的降低。最后,在启动期间内部热交换器有效性的变化导致损失约12%的性能系数。

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