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Navier-Stokes flow field analysis of compressible flow in a high pressure safety relief valve

机译:高压安全溢流阀中可压缩流的Navier-Stokes流场分析

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摘要

The objective of this study is to investigate the complex three-dimensional flowfield of an oxygen safety pressure relieve valve during an incident, with a computational fluid dynamic (CFD) analysis. Specifically, the analysis will provide a flow pattern that would lead to the expansion of the eventual erosion pattern of the hardware, so as to combine it with other findings to piece together a most likely scenario for the investigation. The CFD model is a pressure based solver. An adaptive upwind difference scheme is employed for the spatial discretization, and a predictor, multiple corrector method is used for the velocity-pressure coupling. The computational result indicated vortices formation near the opening of the valve which matched the erosion pattern of the damaged hardware.
机译:这项研究的目的是通过计算流体动力学(CFD)分析研究事故期间氧气安全减压阀的复杂三维流场。具体而言,分析将提供一种流模式,该流模式将导致最终的硬件腐蚀模式扩展,从而将其与其他发现结合起来,以构成最有可能进行调查的方案。 CFD模型是基于压力的求解器。空间离散采用自适应迎风差分方案,速度-压力耦合采用预测,多重校正方法。计算结果表明,在阀门开口附近形成了涡流,这与损坏的硬件的腐蚀模式相符。

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