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Hydrodynamic Pressures on Arch Dam during Earthquakes

机译:地震期间拱坝上的水动力压力

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A complete three-dimensional finite difference scheme has been developed and used to analyze the nonlinear hydrodynamic pressures on arch dam during earthquakes. Both free-surface waves and nonlinear convective acceleration are included in the analysis. Various dam shapes and reservoir banks were studied and the characteristic of nonlinear contribution due to curved geometry and free-surface waves are discussed. Numerical experiments have been made to determine the desirable mesh size arrangements and time increments. The effects of surface wave and convective acceleration on hydrodynamic pressure could augment the hydrodynamic pressure to 10% larger than that of a linear analysis. For an earthquake with large ground displacement, a large rise of the water surface could probably happen and be a severe threat to human safety in recreational areas and even cause overflow to affect the safe operation of the arch dam. An empirical formula is given to predict approximate hydrodynamic force.
机译:提出了一个完整的三维有限差分方案,用于分析拱坝在地震过程中的非线性水动力压力。自由表面波和非线性对流加速度都包括在分析中。研究了各种大坝的形状和水库堤,并讨论了由于弯曲的几何形状和自由面波而引起的非线性贡献的特征。已经进行了数值实验以确定所需的网孔尺寸布置和时间增量。表面波和对流加速度对流体动力压力的影响可使流体动力压力比线性分析大10%。对于地面位移较大的地震,很可能会发生水面大幅上升,严重威胁娱乐区的人身安全,甚至造成溢流影响拱坝的安全运行。给出了经验公式来预测近似流体动力。

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