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A novel procedure for determination of hydrodynamic pressure along upstream face of dams due to earthquakes

机译:确定地震引起的大坝上游面水动力压力的新方法

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摘要

The estimation of hydrodynamic pressures along the upstream face of the dam is a critical parameter for the accurate analysis and design of a dam. The accurate estimation of the hydrodynamic pressures necessitates the consideration of interaction between the dam, the reservoir and the foundation. The interaction effects of the unbounded domain of the reservoir and the absorptive materials deposited at the reservoir bottom are frequency dependent which can be incorporated in a frequency domain procedure easily. But in a time domain procedure the frequency dependent interaction effects are lost. In a frequency domain solution, the excitation frequencies are extracted from the earthquake signal using a Fourier transformation, but do not give any information about how it varies with time. To overcome this, a short-time Fourier transform based formulation is presented in this paper to evaluate the hydrodynamic pressures in time domain to account for the frequency dependent interaction effects of the dam-reservoir system. Thus, the adequate accuracy in the determination of hydrodynamic pressure under earthquake excitation is ensured with the proposed truncation boundary condition.
机译:沿大坝上游面的水动力压力的估算是精确分析和设计大坝的关键参数。对水动力压力的准确估计需要考虑大坝,水库和地基之间的相互作用。储层的无界域与沉积在储层底部的吸收性物质的相互作用效应取决于频率,可以很容易地将其纳入频域过程。但是在时域过程中,依赖于频率的交互作用会丢失。在频域解决方案中,使用傅立叶变换从地震信号中提取激励频率,但未提供有关其随时间变化的任何信息。为了克服这个问题,本文提出了一种基于短时傅立叶变换的公式,以评估时域中的水动力压力,以考虑大坝-水库系统的频率依赖性相互作用效应。因此,通过提出的截断边界条件,确保在地震激励下确定水动力压力时具有足够的精度。

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