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Estimating the opening time of a direct spring operated pressure relief valve in the case of multiphase flow of fixed mass fraction in the absence of piping

机译:在没有管道的情况下,在固定质量分数的多相流动的情况下估计直弹簧操作压力阀的打开时间

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This paper addresses the effect of non-flashing multiphase flow on the dynamic behaviour of direct spring operated pressure relief valves (PRV). We employ DIER's w method to describe the mass flux through the valve for different x(g) gas mass fractions, which is combined with the one-degree-of-freedom mechanical model of the PRV and the vessel pressure dynamics, providing a simulation tool for predicting venting scenarios. We emphasise on the proper description of the fluid momentum forces on the valve disc. Three typical valve geometries are considered: a 'reaction-like' geometry with large deflection angle reversing the flow, a simple disc valve with purely radial outlet and a conical geometry, for which the direction of the flow through the valve does not change significantly. It was found that by merely varying the mass fraction of the liquid and the gas, the valve opening time changes drastically, over a range of several orders of magnitude. By using a simplified mechanical analysis and assuming frozen mixture (i.e. fixed mass fraction), a formula was developed providing an order-of-magnitude estimation of the valve opening time.
机译:本文解决了非闪烁多相流动对直喷式弹簧式压力浮雕阀(PRV)动态行为的影响。我们采用Dier的W方法来描述通过阀门的质量磁通量,用于不同的X(g)气体质量分数,其与PRV的一度自由度和血管压力动力学组合,提供了一种模拟工具预测通风方案。我们强调了阀盘上流体动量的正确描述。考虑了三个典型的阀门几何形状:具有大的偏转角度的“反应状”几何形状反转流量,具有纯粹径向出口的简单盘阀和锥形几何形状,其流过阀的流动方向不会显着变化。发现,通过仅改变液体和气体的质量分数,阀门开口时间急剧变化,在一系列数量级上。通过使用简化的机械分析和假设冷冻混合物(即固定质量分数),开发了一种公式,提供阀开启时间的幅度级估计。

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