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CFD Simulation of Ejector in Steam Jet Refrigeration

机译:蒸汽喷射制冷喷射器的CFD模拟

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In this study CFD technique was employed to investigate the effect of divergent angle of primary nozzle, NXP (NXP = Distance between the nozzle exit to mixing chamber inlet) and throat of the ejector on the performance of ejector using the steam jet refrigeration cycle. In all these cases, only one fixed mixing chamber with different divergent primary nozzle, NXP and throat of an ejector was investigated numerically using the commercial CFD package, the effect of primary fluid pressure mass flow rate and mach numbers were observed and analyzed. The velocity contour lines were used to explain the happening of process inside the ejector it was found that the throat diameter, NXP and diverging angle of primary nozzle plays a crucial role in the steam jet refrigeration.
机译:在这项研究中,使用CFD技术研究了主喷嘴发散角NXP(NXP =喷嘴出口到混合室入口之间的距离)和喷射器喉部对使用蒸汽喷射制冷循环的喷射器性能的影响。在所有这些情况下,仅使用商业CFD软件包对一个具有不同发散的主喷嘴,NXP和喷射器的喉部的固定混合室进行了数值研究,观察和分析了主流体压力质量流量和马赫数的影响。用速度轮廓线解释了喷射器内部过程的发生,发现喉道直径,NXP和主喷嘴的发散角在蒸汽喷射制冷中起着至关重要的作用。

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