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A predictive model for fling-step in near-fault ground motions based on recordings and simulations

机译:基于记录和模拟的近断层地面跳动的预测模型

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We identify potential data sources for fling-step and discuss their value, compile a dataset of simulated and recorded ground motions containing fling, extract fling pulses from these ground motions, and derive a predictive model for fling amplitude and period that is compared to existing empirical models. Fling is the result of permanent static offset of the ground during an earthquake, but is usually ignored because ground motion records from accelerometers contain errors that make it difficult to measure static offsets. However, some data sources include fling, such as specially processed recordings, ground motion simulations, and high-rate global positioning systems (GPS). From this data, we extract fling pulses using the pattern search global optimization algorithm. The resulting displacement amplitudes and periods are used to create a new predictive equation for fling parameters, are compared to existing empirical models for pulse period, fling amplitude, and surface displacement along the fault, and are found to match reasonably well. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们确定潜在的数据源来进行猛击,并讨论其价值,汇编包含猛击的模拟和记录地面运动的数据集,从这些地面运动中提取猛击脉冲,并得出与当前经验比较的猛击幅度和周期的预测模型楷模。跳动是地震期间地面永久性静态偏移的结果,但通常会被忽略,因为来自加速度计的地面运动记录包含一些误差,这些误差使得难以测量静态偏移。但是,某些数据源包括猛冲,例如经过特殊处理的记录,地面运动模拟和高速全球定位系统(GPS)。从这些数据中,我们使用模式搜索全局优化算法提取了甩动脉冲。所产生的位移幅度和周期被用来为窜动参数创建一个新的预测方程,并与现有的脉冲周期,窜动幅度和沿断层的地表位移的经验模型进行比较,并发现合理匹配。 (C)2015 Elsevier Ltd.保留所有权利。

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