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Numerical simulations of a creep rupture damage in Surry PWR primary circuit under TMLB accident

机译:TMLB事故下Surry PWR一次回路蠕变断裂破坏的数值模拟

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摘要

In the nuclear safety field, the thermomechanical phenomena that occur during an accident in a nuclear power plant (NPP) are of particular importance. During some reactor severe accidents, the decay energy of the core is transferred via the reactor cooling system (RCS) to other parts of this circuit. The associated heatup of RCS structures can lead to pressure boundary failures; with notable vulnerabilities, i.e., the lower head vessel, the pressurizer surge line, the hot leg nozzles, etc. The potential for a primary circuit component rupture is of particular concern because fission products could be released into the environment by such a failure. The risk is higher in-vessel; the relocated debris toward the lower head vessel, following a potential melting of the core, leads to the rupture of the most important protective barrier. Primary circuit structures are subject to the effects of high pressure and high temperature throughout their service life. Such loadings generally lead to creep rupture. This risk is more likely when these structures experience transients or severe accidents. One of the most studied accidents is the station blackout (SBO). SBO without operator actions accident (TMLB’ sequence) is considered as one of the most likely scenarios that may threaten the integrity of vulnerable RCS pressure boundaries. In this manuscript, we have evaluated, using the system code RELAP5/SCDAPSIM 3.4, the damage caused by rupture of some structures of the primary circuit of the Surry NPP. The structures analyzed are the surge line, the hot leg nozzles and the lower head vessel. RELAP5/SCDAPSIM 3.4 results indicate that surge line (hot leg) failures will be the first failures in the RCS pressure boundary.
机译:在核安全领域,在核电站(NPP)事故期间发生的热机械现象尤为重要。在某些反应堆严重事故期间,堆芯的衰减能量会通过反应堆冷却系统(RCS)传递到该回路的其他部分。 RCS结构的伴热会导致压力边界失效。具有明显的脆弱性,例如下缸盖容器,增压器喘振线,热腿喷嘴等。一次回路部件破裂的可能性特别受到关注,因为裂变产物可能会因这种故障而释放到环境中。风险较高。堆芯可能熔化后,朝向下部头部容器重新定位的碎屑会导致最重要的保护性屏障破裂。初级回路结构在整个使用寿命中都会受到高压和高温的影响。这种载荷通常会导致蠕变破裂。当这些结构遭受瞬态或严重事故时,这种风险更有可能发生。研究最多的事故之一是车站停电(SBO)。没有操作员动作事故(TMLB序列)的SBO被认为是最有可能威胁易受攻击的RCS压力边界完整性的情况之一。在本手稿中,我们已使用系统代码RELAP5 / SCDAPSIM 3.4评估了Surry NPP一次电路某些结构破裂引起的损坏。分析的结构是喘振线,热腿喷嘴和下缸盖容器。 RELAP5 / SCDAPSIM 3.4结果表明,喘振线(热腿)故障将是RCS压力边界中的第一个故障。

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