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Analysis of Pressure Relief Valve Dynamics During Opening

机译:打开过程中减压阀动力学分析

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In nuclear power plants power actuated pressure relief valves serve several purposes. They act as safety valves and open automatically in response to unusually high pressures in the primary system. They also act as power operated valves and are used to relieve steam in response to automatic or manually initiated control signals. These valves are required to lift completely over a short duration from the time that they receive an actuation signal, or the system pressure exceeds the set point. This short lift time results in the valve disk moving at high velocities, and can result in high impact forces on the piston and stem when the valve fully opens. To quantitatively evaluate the dynamic performance of the Target Rocket Pressure Relief Valve, an analysis effort was undertaken which would accommodate both the fluid dynamic features of the valve operation, as well as the kinematic characteristics of the valve, during pressure relief valve operation. To execute the analysis, the Generalized Fluid System Simulation Program (GFSSP) was used. GFSSP is a network flow solver CFD code developed by NASA that has the ability to analyze transient, multi-phase flows, and conjugate heat transfer, along with the inclusion of custom user subroutines developed by the user which can accommodate other simulation requirements. In this paper we present the GFSSP model developed, and the computed results that could be compared with corresponding parameters as measured from experimental testing for the pressure relief valve. Adjustments to GFSSP input parameters allow the anchoring of the GFSSP valve model to test data. This makes it possible to use the GFSSP model as a predictive tool for understanding valve dynamics, as well as evaluating proposed pressure relief valve modifications for performance improvements.
机译:在核电站的动力致动力释放阀门中有多种用途。它们充当安全阀并自动打开,以响应主要系统的异常高压力。它们还充当电动阀,并且用于响应自动或手动启动的控制信号来缓解蒸汽。这些阀门需要在它们接收致动信号的时间内完全升高,或者系统压力超过设定点。这种短升降时间导致阀盘处移动高速,并且可以在阀门完全打开时导致活塞上的高冲击力和阀杆。为了定量评估目标火箭压力泄压阀的动态性能,进行了分析努力,该分析能够适应阀门操作的流体动力学特征,以及在减压阀操作期间阀门的运动特性。要执行分析,使用广义流体系统仿真程序(GFSSP)。 GFSSP是由NASA开发的网络流求解器CFD代码,该代码具有分析瞬态,多相流和共轭传热,以及包含用户开发的自定义用户子程序,该方法可以适应其他模拟要求。在本文中,我们介绍了所开发的GFSSP模型,并且计算的结果可以与从减压阀的实验测试测量的相应参数进行比较。调整GFSSP输入参数允许GFSSP阀门模型的锚定测试数据。这使得可以将GFSSP模型用作理解阀动态的预测工具,以及评估所提出的缓解阀改进以进行性能改进。

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