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TWO-PHASE FLOW THROUGH A RELIEF VALVE DISCHARGING INTO A WATER FILLED PIPE

机译:通过溢流阀排入注水管的两相流

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摘要

Relief valves provide overpressure protection of components and systems. To properly size them, one needs to know the fluid conditions upstream and downstream, the physical and thermal properties of the fluids at the postulated relieving conditions, a model that can be used to predict the capacity and the geometry of the inlet and outlet conditions. However, in many applications, it is not uncommon that some of the information needed to properly size relief valves may be missing. For example, there may not be information on the inlet and outlet pipe configuration, which may influence the flow conditions. For single-phase flows, neglecting inlet and outlet piping configurations may have minimal effect on the capacity. However, for fluids that are slightly subcooled with a potential for flashing, the effect may be significant. The problem is magnified by the fact that, unlike single phase flows where the ASME standard provides a method for sizing single phase relief valve capacity, there is no standard model for sizing two-phase flow relief capacity. In this paper, we present the sizing of a relief valve for a slightly subcooled water application with attached piping using the ASME and the OMEGA methods to illustrate the differences in their estimates.
机译:安全阀可为组件和系统提供过压保护。为了正确确定它们的大小,需要了解上游和下游的流体状况,在假定的泄压条件下流体的物理和热特性,一种可用于预测进口和出口状况的容量和几何形状的模型。但是,在许多应用中,可能会丢失正确设置溢流阀尺寸所需的某些信息。例如,可能没有关于入口和出口管道配置的信息,这可能会影响流动条件。对于单相流,忽略入口和出口管道配置可能对容量影响最小。但是,对于稍微过冷并可能产生闪蒸的流体,效果可能会很明显。由于与ASME标准提供了一种确定单相溢流阀容量的方法的单相流不同,没有一个用于确定两相溢流容量的标准模型的事实使问题更加严重。在本文中,我们介绍了使用ASME和OMEGA方法对带有连接管路的稍过冷水应用的溢流阀的尺寸,以说明其估算值的差异。

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