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Hydrodynamic Pressure on Gravity Dams with Different Heights and the Westergaard Correction Formula

机译:不同高度的重力坝的水动力压力及Westergaard修正公式

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Seismic dynamic analysis of gravity dams of five different heights in the time domain was performed based on the fluid-structure coupling model (FSCM). Compared with the results from the FSCM, the maximum hydrodynamic pressures on dams were found to be overestimated by the classical Westergaard formula. The position of the maximum hydrodynamic pressure from the FSCM was found to be obviously raised along the upstream surface of the dam, not at the heel of the dam as in the solution of Westergaard formula. Thus, the Westergaard formula was revised with consideration to the influence of the height of dam, the elasticity of dam, and the absorption characteristic of the reservoir bottom on the hydrodynamic pressure. The solutions of the Westergaard correction formula are quite consistent with the hydrodynamic pressures noted in previous reports. (c) 2018 American Society of Civil Engineers.
机译:基于流固耦合模型(FSCM),对时域五个不同高度的重力坝进行了地震动力分析。与FSCM的结果相比,经典的Westergaard公式高估了大坝的最大水动力压力。发现FSCM的最大水动力压力的位置明显沿着大坝的上游表面升高,而不是像Westergaard公式的解决方案那样,在大坝的后部升高。因此,考虑到坝的高度,坝的弹性以及储层底部的吸收特性对水动力压力的影响,对Westergaard公式进行了修改。 Westergaard修正公式的解与先前报告中提到的流体动力压力非常一致。 (c)2018年美国土木工程师学会。

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