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首页> 外文期刊>Nuclear engineering and technology >A COUPLED CFD-FEM ANALYSIS ON THE SAFETY INJECTION PIPING SUBJECTED TO THERMAL STRATIFICATION
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A COUPLED CFD-FEM ANALYSIS ON THE SAFETY INJECTION PIPING SUBJECTED TO THERMAL STRATIFICATION

机译:热分层对安全注射管的耦合CFD-FEM分析

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Thermal stratification has continuously caused several piping failures in nuclear power plants since the early 1980s. However, this critical thermal effect was not considered when the old nuclear power plants were designed. Therefore, it is urgent to evaluate this unexpected thermal effect on the structural integrity of piping systems. In this paper, the thermal effects of stratified flow in two different safety injection piping systems were investigated by using a coupled CFD-FE method. Since stratified flow is generally generated by turbulent penetration and/or valve leakage, thermal stress analyses as well as CFD analyses were carried out considering these two primary causes. Numerical results show that the most critical factor governing thermal stratification is valve leakage and that temperature distribution significantly changes according to the leakage path. In particular, in-leakage has a high possibility of causing considerable structural problems in RCS piping.
机译:自1980年代初以来,热分层已连续导致核电厂发生数项管道故障。但是,当设计旧的核电站时,并未考虑这种关键的热效应。因此,迫切需要评估这种对管道系统结构完整性的意外热影响。本文采用耦合CFD-FE方法研究了两种不同安全注入管道系统中分层流的热效应。由于分层流动通常是由湍流渗透和/或阀门泄漏产生的,因此考虑到这两个主要原因,进行了热应力分析和CFD分析。数值结果表明,控制热分层的最关键因素是阀门泄漏,并且温度分布会根据泄漏路径而显着变化。特别是,渗漏很可能在RCS管道中引起相当大的结构问题。

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