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AN EXPERIMENTAL STUDY OF STEAM GENERATOR TUBE LOADING DURING BLOWDOWN

机译:排汽过程中蒸汽发生器管负载的实验研究

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If the main steam line from a nuclear steam generator were to break, the water in the steam generator would rapidly flash off in what is called a blowdown. Such an event could produce significant loading on the steam generator tubes, which if fractured, could lead to a loss of radioactive materials from containment. Thus, knowing the tube loading during such an event is an important input for safe design. This paper presents the results of an experimental laboratory study of the transient tube loading during a simulated blowdown. The working fluid was R-134a and the sectional tube model was a normal triangular array with a pitch ratio of 1.36. Tests were conducted with various levels of liquid R-134a and various numbers of tube rows. The transient tube loading is explained in terms of the associated flow physics and the maximum load is compared with existing models for tube loading obtained under steady flow conditions.
机译:如果来自核蒸汽发生器的主蒸汽管道破裂,则蒸汽发生器中的水将迅速闪蒸,称为排污。这样的事件可能会在蒸汽发生器管上产生很大的负载,如果破裂,可能会导致安全壳内放射性物质的损失。因此,知道这种情况下的管负载是安全设计的重要输入。本文介绍了在模拟排污过程中对瞬态管负载进行实验研究的结果。工作流体为R-134a,截面管模型为螺距比为1.36的法向三角形阵列。使用各种水平的液体R-134a和不同数量的管排进行了测试。暂态管载荷是根据相关的流动物理原理进行解释的,并且将最大载荷与在稳态流动条件下获得的管载荷的现有模型进行比较。

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