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COMPUTATION OF FLUID THRUST FORCE FROM THE PRESSURE RELEASE TANK OF NUCLEAR POWER PLANT PRESSURIZER

机译:核电站增压器泄压罐的流体推力计算。

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Pressure release tank is a key component of nuclear power plant safeguard. Evaluating the fluid thrust force against nearby structures from high pressure and high temperature flow jet under postulated accidents is an essential task for nuclear system design and safety estimation. In this work, flow jet impingement from pressure release tank to nearby building roof is computed via a two-stage strategy. First, the 1-dimensional RELAP5 code is applied to estimate thermal-hydraulic conditions at pressure release tank outlet. The thermal-hydraulic computational model includes key components of pressure release tank and its connection to the pressurizer. Based upon the thermal-hydraulic estimation at the pressure release tank outlet, detailed computational fluid dynamics (CFD) simulation is performed with full considerations of how flow thrust is applied on nearby structures. The two-stage computational strategy provides a practical paradigm of fluid thrust force estimation for industrial applications.
机译:泄压罐是核电厂保障措施的关键组成部分。在假定的事故下,评估高压和高温射流对附近结构的流体推力是核系统设计和安全评估的重要任务。在这项工作中,通过两步策略计算了从压力释放罐到附近建筑物屋顶的射流冲击。首先,使用一维RELAP5代码估算泄压罐出口处的热工条件。热工水力计算模型包括压力释放罐及其与增压器的连接的关键组件。基于泄压罐出口处的热工液压估算,在充分考虑如何将流动推力施加到附近结构上的情况下,执行详细的计算流体动力学(CFD)模拟。两阶段计算策略为工业应用提供了流体推力估算的实用范例。

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