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A CFD-based investigation of the energy performance of two-phase R744 ejectors to recover the expansion work in refrigeration systems: An irreversibility analysis

机译:基于CFD的两相R744喷射器的能量性能调查,以恢复制冷系统中的膨胀功:不可逆性分析

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摘要

A CFD-based numerical analysis of the flow irreversibility in R744 ejectors is presented. A validated CFD tool was used to investigate three cases that were differentiated by the mass flow rate per unit area (mass flux) that passed through the mixer, which represented three dissimilar flow patterns. The mixer mass flux was found to significantly affect the ejector performance both locally and globally. An original approach was introduced to assess the contribution of the local irreversibilities to the overall entropy increase. A new factor was proposed to evaluate the ejector performance based on the reference entropy increase in a classic expansion valve. In addition, the influence of the mixer diameter and length on the ejector performance was numerically analysed, which showed that the effects of both geometric parameters may be significant. Namely, in the conditions considered, both enlargement of the mixer cross section area by 17.4% as well as shortening the mixer length by 33.3% resulted in the increase of the overall entropy growth rate by 8.9% and 5.4%, respectively.
机译:提出了基于CFD的R744喷射器中流动不可逆性的数值分析。使用经过验证的CFD工具调查三种情况,这些情况通过混合器的每单位面积质量流量(质量通量)来区分,代表了三种不同的流动模式。发现混合器的质量通量在局部和全局上都显着影响喷射器的性能。引入了一种原始方法来评估局部不可逆性对整体熵增加的贡献。提出了基于经典膨胀阀中参考熵的增加来评估喷射器性能的新因素。此外,还对混合器直径和长度对喷射器性能的影响进行了数值分析,结果表明这两个几何参数的影响都可能很大。即,在所考虑的条件下,混合器横截面积的增加17.4%以及混合器长度的缩短33.3%都使总熵增长率分别增加了8.9%和5.4%。

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