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A study on major seismological and fault-site parameters affecting near-fault directivity ground-motion demands for strike-slip faulting for their possible inclusion in seismic design codes

机译:影响走滑断层近断层方向性地震动要求的主要地震学和断层参数的研究,以将其包括在抗震设计规范中

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摘要

We investigate the role of major seismological (magnitude, pulse period, fault length, seismic activity, orientation of incident seismic wave with respect to fault-strike) and geometrical (fault-site geometry) parameters to understand the variations in ground-motion demands due to near-fault directivity (NFD) effects. To this end, we used a suite of probabilistic strike-slip earthquake scenarios and established the elastic spectral amplitude distributions conditioned on the above investigated parameters. The probabilistic earthquake scenarios also provided information on the sensitivity of directivity dominant near-fault (NF) ground motions to mean annual exceedance rates. We implemented different narrow-band directivity models to observe the significance of seismological modeling in the directivity dominant NF ground-motion amplitudes. The observations from these case studies suggest that each one of the above parameters have implications on the amplitude and spatial variation of directivity dominating NF ground-motion demands. The influence of each investigated parameter on NFD spectral amplitudes is dependent of the implemented directivity model. We also establish some rules to map the spatial extent of directivity dominant ground motions considering the variations in the investigated seismological parameters. The outcomes of the paper can be used to incorporate the NFD effects into design spectra representing different annual exceedance rates.
机译:我们调查主要地震学(幅度,脉冲周期,断层长度,地震活动,入射地震波相对于断层走向的方向)和几何参数(断层几何形状)的作用,以了解由于地面运动需求而引起的变化到接近故障的方向性(NFD)效果。为此,我们使用了一组概率性的走滑地震场景,并根据上述研究参数建立了弹性谱振幅分布。概率地震场景还提供了有关方向性占主导地位的近断层(NF)地面运动对年均超出率的敏感性的信息。我们实施了不同的窄带方向性模型,以观察地震学模型在方向性主导NF地面运动振幅中的重要性。这些案例研究的观察结果表明,上述每个参数都对主导NF地面运动需求的方向性的幅度和空间变化有影响。每个研究参数对NFD频谱幅度的影响取决于所实现的方向性模型。考虑到所研究的地震学参数的变化,我们还建立了一些规则来绘制方向性主导地面运动的空间范围。本文的结果可用于将NFD效应纳入代表不同年度超标率的设计频谱中。

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