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Prediction of ground motion due to the collapse of a large-scale cooling tower under strong earthquakes

机译:强烈地震作用下大型冷却塔倒塌引起的地震动预测

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The ground motion owing to the collapse of a large-scale cooling tower under strong earthquakes was appropriately predicted using a comprehensive approach. The predicted results can be used for the safety evaluation of nuclear-related facilities adjacent to the cooling tower as well as in the planning of nuclear power plant construction in China. In this study, a cooling tower-soil model was first developed based on a falling weight-soil model, which the authors verified by falling weight tests. Then the collapse process of a cooling tower was simulated, and the collapse-induced ground vibrations were assessed by using the proposed model. Finally, the ground motion, which was a combination of the earthquake-induced ground motion and the collapse-induced ground vibrations, was estimated based on the superposition principle of waves. It was found that the cooling tower may collapse under strong earthquakes with the peak ground accelerations (PGAs) in the range of 0.35-0.45 g in x (EW) and y (NS) directions, respectively. These PGAs are far beyond the PGA range of major earthquakes in the common seismic design in China. The types of the site geologies of towers can significantly affect the collapse-induced ground vibrations. For a typical hard soil consisting of strongly weathered sandy slate, moderate ground vibrations may occur in the considered region. The collapse-induced PGAs were in the range of 0.017-0.046 g for the observed points at distances of 350 m in radial direction. For a rock-like foundation, the collapse-induced radial PGAs may be as high as 0.08 g at distances of 350 m, indicating that the effect of the collapse-induced ground vibrations on the nuclear-related facilities should be seriously assessed in certain scenarios. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用综合方法可以适当地预测由于大型冷却塔在强烈地震下倒塌而引起的地震动。预测结果可用于与冷却塔相邻的核相关设施的安全评估以及中国的核电厂建设规划。在这项研究中,首先基于降重-土壤模型建立了冷却塔-土壤模型,作者通过降重测试进行了验证。然后,模拟了冷却塔的倒塌过程,并使用所提出的模型评估了倒塌引起的地面振动。最后,根据波浪的叠加原理估算了地震动,它是地震引起的地震动和坍塌引起的地震动的结合。结果发现,冷却塔可能会在强烈地震下坍塌,其最大地面加速度(PGA)沿x(EW)和y(NS)方向分别在0.35-0.45 g范围内。在中国的普通地震设计中,这些PGA远远超出了大地震的PGA范围。塔的现场地质类型会严重影响倒塌引起的地面振动。对于由强风化的砂岩组成的典型硬土,在所考虑的区域可能会发生中等程度的地面振动。对于沿径向方向350 m处的观测点,由坍塌引起的PGA在0.017-0.046 g范围内。对于类似岩石的地基,在350 m的距离处,坍塌引起的径向PGA可能高达0.08 g,这表明在某些情况下应认真评估坍塌引起的地面振动对核相关设施的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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