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Seismic response of embankment dams under near-fault and far-field ground motion excitation

机译:近断层和远场地震动激励下堤坝的地震响应

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The characteristics of near-fault and far-field earthquakes differ. Records suggest that a near-fault ground motion is characterized by a large high-energy pulse and a distinctive pulse shape for the velocity time history. The present study compared near-fault and far-field ground motion effects and investigates the consequence of well-known characteristics of near-fault ground motion on the nonlinear dynamic response of an embankment dam. It was shown that median maximum demands, such as crest settlement and critical slip surface displacement of the embankment dam, were higher for near-fault ground motion than far-field motion. For pulse-type near-fault input, the maximum demand was a function of spectral shape and the ratio of the pulse period to the fundamental period of the embankment dam. Near-fault ground motion with a period pulse 1.5 to 4 times greater than the natural period of the dam created a larger seismic demand than when the pulse period was equal to or smaller than the natural period of dam. This difference increased up to 1.85 times as the ground motion intensity increased. Velocity-related ground motion intensity indices, such as peak ground velocity, were much more effective than peak ground acceleration to correlate with seismic demand. This was because shear stress level has a direct relation with the velocity time history of ground motion.
机译:近断层地震和远场地震的特征不同。记录表明,近断层地面运动的特征是大的高能脉冲和速度时间历史的独特脉冲形状。本研究比较了近断层和远场地震动的影响,并研究了近断层地震动的著名特征对堤坝非线性动力响应的影响。结果表明,近断层地面运动的中位最大需求,例如堤坝沉降和堤坝的临界滑移面位移,远高于远场运动。对于脉冲型近故障输入,最大需求是频谱形状以及堤坝的脉冲周期与基波周期之比的函数。与脉冲周期等于或小于大坝自然周期的情况相比,周期为大坝自然周期大1.5到4倍的近断层地面运动产生了更大的地震需求。随着地面运动强度的增加,这种差异增加到1.85倍。与速度有关的地面运动强度指数(例如峰值地面速度)比峰值地面加速度要有效得多,以与地震需求相关。这是因为剪应力水平与地运动的速度时间历史直接相关。

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