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Numerical simulation of earthquake excited dam-reservoirs with irregular geometries using an immersed boundary method

机译:不规则几何形状的地震激励大坝水库的沉浸边界法数值模拟

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In this work, a ghost-cell immersed boundary method is proposed for the hydrodynamic response of earthquake excited dam-reservoirs. The numerical method employs a second order accurate two-step projection algorithm including compressibility effects in pressure field due to earthquake. The effects of reservoir bottom absorption are treated by introducing damping terms into the momentum equations. Hydrodynamic response of earthquake excited dam with a sloping face is simulated to demonstrate the accuracy of the present numerical method. Numerical results compared with previous numerical and analytical solutions show that the present immersed boundary method can accurately compute the hydrodynamic forces on inclined and curved dam faces including the effects of water compressibility and reservoir bottom absorption for the possibility of resonance. The proposed numerical method was shown to have significant advantages in computational time and memory usage for the hydrodynamic simulation of large dam-reservoirs with arbitrary geometries. Hydrodynamic forces on a double curvature arch dam subjected to real earthquake induced ground motion are also simulated to demonstrate the capability of the method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,提出了一种幻影细胞浸入边界方法,用于地震激励的水库水动力响应。该数值方法采用了二阶精确的两步投影算法,该算法包括地震引起的压力场中的压缩效应。通过将阻尼项引入动量方程来处理储层底部吸收的影响。模拟了带有倾斜面的地震激励大坝的水动力响应,以证明本数值方法的准确性。与以前的数值和解析解相比,数值结果表明,本发明的沉浸边界方法可以准确地计算斜面和弯曲坝面上的水动力,包括水的可压缩性和储层底部吸收的影响,从而产生共振。结果表明,所提出的数值方法在计算时间和内存使用方面具有明显的优势,适用于任意几何形状的大型水库水动力仿真。还对在真实地震引起的地震动下的双曲拱拱坝上的流体动力进行了仿真,以证明该方法的能力。 (C)2015 Elsevier Ltd.保留所有权利。

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