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Sizing of Throttling Device for Gas/Liquid Two-Phase Flow Part 1: Safety Valves

机译:气/液两相流节流装置的尺寸调整第1部分:安全阀

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The calculation of the mass flow rate through throttling devices is difficult when handling two-phase flow, especially when boiling liquids flow into these fittings. Safety valves are typically oversized by a significant extent, if sizing methods like the ω-method (originally developed by J. Leung), are used in case of low-quality inlet flow. Within this method the boiling delay of the liquid and the influence of the boiling delay on the mass flow rate are not considered. In this paper the HNE-DS model is proposed, where the compressibility coefficient ω is extended by adding a boiling delay coefficient. It includes the degree of thermodynamic nonequilibrium at the start of the nucleation of small mass fractions of vapor upstream of the fitting. In Pan 1 the sizing of safety valves is described. Additionally, the derivation of the HNE-DS method is given in detail. Part 2 considers the mass flow rate through short nozzles, orifices, and control valves. The HNE-DS model can be used for all those fittings. A comparison with experimental results on safety valves with steam/water and air/water flow has emphasized the excellent accuracy of the new model.
机译:当处理两相流时,尤其是当沸腾的液体流入这些配件时,很难计算通过节流装置的质量流量。如果在入口流量低的情况下使用了诸如ω方法(最初由J. Leung开发)的选型方法,则安全阀通常会在很大程度上过大。在这种方法中,没有考虑液体的沸腾延迟和沸腾延迟对质量流率的影响。本文提出了HNE-DS模型,其中通过增加沸腾延迟系数来扩展可压缩系数ω。它包括配件上游小质量蒸汽成核开始时的热力学非平衡度。在Pan 1中,描述了安全阀的尺寸。另外,详细给出了HNE-DS方法的推导。第2部分考虑通过短喷嘴,节流孔和控制阀的质量流率。 HNE-DS模型可用于所有这些配件。与带有蒸汽/水和空气/水流的安全阀的实验结果进行比较,强调了新模型的出色准确性。

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