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A CFD study on two-phase frozen flow of air/water through a safety relief valve

机译:通过安全泄压阀对空气/水的两相冻结流进行CFD研究

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摘要

The air-water two phase critical flows through a safety relief valve commonly used in the refrigeration industry is examined with particular emphasis on the prediction of the critical mass flowrates using CFD based approaches. The expansion of the gas through the valve and the associated acceleration is coupled to the liquid phase and results in changes to the velocity slip with the possibility of influencing the choking conditions and the magnitude of the critical mass flows. These conditions are poorly reported in the literature for safety valves. This paper presents a study where the ability of established two phase multi-dimensional modelling approaches to predict such conditions are investigated. Comparison with the simplified mixture model will show that this model tends to underestimate mass flowrates for medium to high liquid mass fraction. However, the two fluid model can adequately account for the thermal and mechanical non equilibrium for these complex flow conditions with the use of simplified droplet sizing rules.
机译:通过制冷行业中常用的安全泄压阀的空气-水两相临界流经过检查,特别强调了使用基于CFD的方法对临界质量流量的预测。气体通过阀门的膨胀和相关的加速度与液相耦合,并导致速度滑移的变化,从而可能影响阻气条件和临界质量流量。这些条件在安全阀的文献中很少报道。本文提出了一项研究,其中研究了建立的两相多维建模方法预测此类情况的能力。与简化混合物模型的比较将表明,该模型倾向于低估中高液体质量分数的质量流量。但是,使用简化的液滴尺寸规则,两种流体模型可以充分考虑这些复杂流动条件下的热和机械非平衡。

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