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Kinematic source model for simulation of near-fault ground motion field using explicit finite element method

机译:应用显式有限元法模拟近断层地震动场的运动学源模型

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This paper briefly reviews the characteristics and major processes of the explicit finite element method in modeling the near-fault ground motion field. The emphasis is on the finite element-related problems in the finite fault source modeling. A modified kinematic source model is presented, in which vibration with some high frequency components is introduced into the traditional slip time function to ensure that the source and ground motion include sufficient high frequency components. The model presented is verified through a simple modeling example. It is shown that the predicted near-fault ground motion field exhibits similar characteristics to those observed in strong motion records, such as the hanging wall effect, vertical effect, fling step effect and velocity pulse effect, etc.
机译:本文简要回顾了显式有限元方法在模拟近断层地震动场中的特点和主要过程。重点是有限故障源建模中与有限元有关的问题。提出了一种改进的运动学源模型,其中将具有高频分量的振动引入到传统滑移时间函数中,以确保源运动和地面运动包括足够的高频分量。通过一个简单的建模示例验证了所提供的模型。结果表明,预测的近断层地震动场表现出与强运动记录相似的特征,如悬壁效应,竖向效应,扑阶效应和速度脉冲效应等。

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