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Load Definition on BWR Steam Dryer Due to Turbine Stop Valve Closer

机译:涡轮截止阀关闭,BWR蒸汽干燥机的负荷定义

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In the boiling water reactor (BWR), closure of a turbine stop valve (TSV) on the main steam piping system, hereafter called main steam (MS) line, will reduce the steam flow velocity to zero in about 100 msec (0.1 Sec) and create a pressure disturbance that propagates backward through the MS line toward the reactor pressure vessel (RPV). When the compression wave reaches the RPV, it expands into a region at lower pressure, transmitting a compression wave at acoustic speed from the pipe geometry into a complex geometric region at reactor pressure, bounded by the steam dryer and RPV inner wall surfaces. The arriving compression wave expands on the dryer surface, creating a pressure force, while simultaneously steam in the steam line, compressed from the valve closure to a pressure higher than that in the reactor, flows backwards into the RPV, creating a jet impingement, or "backflow" force on the dryer. Simplified, conservative modeling is applied in this study to obtain reasonable bounding loads which allow for the dryer curvature and other complexities of the dryer-vessel geometry.
机译:在沸水反应堆(BWR)中,关闭主蒸汽管道系统上的涡轮截止阀(TSV)(以下称为主蒸汽(MS)管线)会在大约100毫秒(0.1秒)内将蒸汽流速降至零。并产生压力扰动,该扰动会通过MS管线向后传播至反应堆压力容器(RPV)。当压缩波到达RPV时,它会扩展到较低压力的区域,以声速将压缩波从管道几何结构传输到反应堆压力下的复杂几何区域,并受蒸汽干燥器和RPV内壁表面的限制。到达的压缩波在干燥机表面膨胀,产生压力,同时蒸汽管线中的蒸汽(从阀门关闭处压缩到高于反应堆中的压力)回流到RPV中,形成射流,或者干衣机上的“回流”力。在这项研究中,采用了简化的保守模型来获得合理的边界载荷,该边界载荷考虑了干燥机曲率和干燥机容器几何形状的其他复杂性。

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