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Effects of two-phase flow friction factor correlations on the optimal pressure drop-martinelli parameter pair in a mini-channel

机译:两相流摩擦系数相关性对微通道内最佳压降-马蒂内利参数对的影响

摘要

Substantial research has been completed with more on-going on the flow pattern and heat transfer associated with two-phase flows. Discrepancies reported may have been as much as agreements, due to the different models, approaches, flow regimes, correlations, and new working fluids being utilized. This paper reports the outcome of a study to look at the effects of applying two different friction factor correlations on the simultaneous minimization of the pressure drop and Martinelli parameter under optimized flow rate and vapor quality, using genetic algorithm. The homogeneous model is assumed with ammonia as the working fluid, the coolant being environmentally friendly and having recently discovered as a potential replacement for the current refrigerants in micro and mini-channels. Results show that significant differences in the frictional pressure drop and Martinelli parameter arise due to the different correlations used, and this is only the outcome from two different correlations currently being considered by researchers in pressure drop analysis for two-phase flows in mini-channels. Thus, absolute agreement is indeed not possible between theoretical, experimental, and numerical work in view of the many different available correlations being utilized today with differences between 10 to 100 percent that has already been established.
机译:随着两相流相关的流动模式和传热的不断深入,大量研究已经完成。由于模型,方法,流动方式,相关性和使用的新工作液不同,所报告的差异可能与协议一样多。本文报告了一项研究结果,目的是研究使用遗传算法,在优化的流速和蒸汽质量下,应用两种不同的摩擦系数相关性对同时降低压降和马蒂内利参数的影响。假设均质模型以氨为工作流体,冷却剂对环境友好,最近发现它可以替代微通道和微型通道中的当前制冷剂。结果表明,由于使用了不同的相关性,因此导致了摩擦压降和马蒂内利参数的显着差异,而这仅仅是研究人员目前在微通道两相流压降分析中考虑的两种不同相关性的结果。因此,鉴于当今正在利用许多不同的可用相关性,并且已经建立了10%到100%的差异,在理论,实验和数字工作之间确实不可能实现绝对一致。

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