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A Calculation Method for the Sloshing Impact Pressure Imposed on the Roof of a Passive Water Storage Tank of AP1000

机译:AP1000无源储水箱屋顶施加晃动冲击压力的计算方法

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摘要

There is a large water storage tank installed at the top of containment of AP1000, which can supply the passive cooling. In the extreme condition, sloshing of the free surface in the tank may impact on the roof under long-period earthquake. For the safety assessment of structure, it is necessary to calculate the impact pressure caused by water sloshing. Since the behavior of sloshing impacted on the roof is involved into a strong nonlinear phenomenon, it is a little difficult to calculate such pressure by theoretical or numerical method currently. But it is applicable to calculate the height of sloshing in a tank without roof. In the present paper, a simplified method was proposed to calculate the impact pressure using the sloshing wave height, in which we first marked the position of the height of roof, then produced sloshing in the tank without roof and recorded the maximum wave height, and finally regarded approximately the difference between maximum wave height and roof height as the impact pressure head. We also designed an experiment to verify this method. The experimental result showed that this method overpredicted the impact pressure with a certain error of no more than 35%. By the experiment, we conclude that this method is conservative and applicable for the engineering design.
机译:安装在AP1000的容纳顶部的大型储水罐,可以提供被动冷却。在极端条件下,罐中的自由表面的晃动可能会在长期地震下撞击屋顶。对于结构的安全评估,有必要计算由水晃动引起的冲击压力。由于对屋顶上的晃动的行为涉及强烈的非线性现象,因此通过目前的理论或数值方法计算这种压力有点难。但它适用于计算坦克中的晃动的高度而没有屋顶。在本文中,提出了一种简化的方法来使用晃动波浪来计算冲击压力,在其中我们首先标记屋顶高度的位置,然后在没有屋顶的罐中产生晃动,并记录最大波高,并且最后认为最大波形高度和屋顶高度与冲击压力头之间的差异大致存在。我们还设计了一个实验来验证这种方法。实验结果表明,该方法呈现出抗冲击压力的一定误差不超过35%。通过实验,我们得出结论,这种方法是保守的,适用于工程设计。

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