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CFD CASE STUDY OF R744 EJECTORS

机译:R744喷射器的CFD案例研究

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摘要

Based on a three-dimensional CFD code developed in Fluent ANSYS environment, a sample geometry of the R744 vapor ejector was numerically analyzed. The energy performance, represented by the ejector efficiency, was simulated for three distinctive sets of boundary conditions. Also, to investigate the local irreversibility effects inside the ejector passages, one-dimensional profiles of pressure, the Mach number, and the cross-section averaged specific entropy were analyzed. For all the cases a relatively low percentage of the total irreversibility is found to occur in the motive and suction nozzles, i.e., less than 15% in total for both nozzles. On the other hand, high losses were registered for mixer and diffuser, up to 49% and 63% of the total irreversibility, accordingly. The CFD simulations were validated against the results of laboratory experiments, finding some discrepancy between the measured and entrained mass flow rates. It was concluded that these discrepancy could arise from the combination between the model assumptions and boundary values.
机译:基于在Fluent ANSYS环境中开发的三维CFD代码,对R744蒸汽喷射器的样品几何形状进行了数值分析。针对三组独特的边界条件模拟了以喷射器效率为代表的能量性能。另外,为了研究喷射器通道内部的局部不可逆效应,分析了压力,马赫数和横截面平均比熵的一维分布图。对于所有情况,发现在动力喷嘴和吸嘴中总不可逆性的百分比相对较低,即,两个喷嘴的总不可逆性总和小于15%。另一方面,混合器和扩散器的损失很高,分别占总不可逆性的49%和63%。针对实验室实验的结果对CFD模拟进行了验证,发现测得的和夹带的质量流量之间存在一些差异。结论是,这些差异可能来自模型假设和边界值之间的组合。

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