首页> 外文会议>ASME Pressure Vessels and Piping Conference >EFFECTS OF INITIAL PRESSURE AND LENGTH OF A BROKEN PIPE ON THE TRANSIENT HYDRAULIC LOADS ACTING ON NUCLEAR STEAM GENERATOR TUBES AND SUPPORTS DURING BLOWDOWN FOLLOWING A SUDDEN FEEDWATER PIPE BREAK
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EFFECTS OF INITIAL PRESSURE AND LENGTH OF A BROKEN PIPE ON THE TRANSIENT HYDRAULIC LOADS ACTING ON NUCLEAR STEAM GENERATOR TUBES AND SUPPORTS DURING BLOWDOWN FOLLOWING A SUDDEN FEEDWATER PIPE BREAK

机译:突发给水管道断裂后近端压力和近脉管瞬态液压载荷对核蒸汽发生器管的瞬态液压载荷的影响

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This paper investigates the effects of steam generator initial pressure and length of a broken feedwater pipe on the transient hydraulic loads on the pressurized water reactor (PWR) steam generator (SG) tubes and supports during blowdown following a sudden feedwater line break (FWLB). To do this, the transient flow fields inside the SG and the connected broken feedwater pipe are calculated by realistically treating the discharge flow as the sub-cooled water flashing flow. Then, the calculated transient flow field data are used to predict the transient hydraulic loads on the PWR SG tubes and supports for some specified cases where the SG initial pressure or the broken feedwater pipe length are different from each other.
机译:本文研究了蒸汽发生器初始压力和损坏的液压负荷在加压水反应器(PWR)蒸汽发生器(SG)管上的瞬态液压负载上的影响,并在突然喷射水线断裂(FWLB)后的排污期间支撑。为此,通过将排出流程实际处理作为子冷却的水闪烁流动来计算SG内部和连接的破损进给水管内的瞬态流场。然后,计算出的瞬态流场数据用于预测PWR SG管上的瞬态液压负载,并支持用于彼此不同的SG初始压力或破碎的进给水管长度的一些指定的情况。

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