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Numerical prediction of transient hydraulic loads acting on PWR steam generator tubes and supports during blowdown following a feedwater line break

机译:在给水线破裂后排污时对PWR蒸汽发生器管作用的瞬态液压载荷的数值预测

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This paper presents a numerical prediction of the transient hydraulic loads acting on the tubes and external supports of a pressurized water reactor (PWR) steam generator (SG) during blowdown following a sudden feedwater line break (FWLB). A simplified SG model was used to easily demonstrate the prediction. The blowdown discharge flow was treated as a flashing flow to realistically simulate the transient flow fields inside the SG and the connected broken feedwater pipe. The effects of the SG initial pressure or the broken feedwater pipe length on the intensities or magnitudes of transient hydraulic loads were investigated. Then predictions of the decompression pressure wave-induced impulsive pressure differential loads on SG tubes and the transient blowdown loads on SG external supports were demonstrated and the general aspects of transient responses of such transient hydraulic loads to the FWLB were discussed.
机译:本文介绍了在突然给水线断裂(FWLB)之后的排污期间作用在压制式水反应器(PWR)蒸汽发生器(SG)上的管子和外部支撑的瞬态液压载荷的数值预测。使用简化的SG模型来容易展示预测。排污排出流量被视为闪烁流动,以实际地模拟SG内的瞬态流量和连接的断料水管内。研究了SG初始压力或破损的进给水管长度对瞬态液压载荷强度或大小的影响。然后,对SG管的减压波感应脉冲压差的预测和SG外部支撑件上的瞬态排污载荷进行了说明,并且讨论了这种瞬态液压载荷对FWLB的瞬态响应的一般方面。

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