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SYNTHETIC EARTHQUAKE GROUND MOTIONS AT CLOSELY SPACED DISTANCES WITH SYNACC

机译:SYNACC在近距离处的合成地震地面运动

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This paper presents a brief review of the SYNACC method for synthesizing earthquake ground motion time histories on an array of points in space. SYNACC is a combination of an empirical and physical model-based method, and involves unfolding in time a site-specific Fourier amplitude spectrum of ground acceleration obtained for a scenario earthquake by an empirical scaling model. The unfolding consists of representing the ground motion as a superposition of traveling surface Love and Rayleigh waves and of body P and S waves, which propagate with phase and group velocities consistent with the dispersion characteristic of the site geology, approximated by parallel layers. Because the coefficients of expansion are scaled so that the Fourier spectrum of the synthetic motion matches a site specific empirical spectrum, the synthetic motions are consistent statistically with observations within the recording range of typical accelerographs (0.02-25 Hz). A Uniform Hazard Fourier spectrum or any specified Fourier spectrum can also be used as a target spectrum. The output consists of synthetic accelerations, velocities and displacements, and point strains, rotations and curvatures, all at a point or at an array of points. Such time histories are useful for the design of spatially extended structures, like pipelines, bridges and tunnels.
机译:本文简要介绍了SYNACC方法,该方法用于在空间点阵列上合成地震地面运动的时间历史记录。 SYNACC是基于经验和物理模型的方法的组合,并且涉及根据经验缩放模型及时展开针对场景地震获得的特定地点的地面加速度的傅立叶振幅谱。展开包括将地面运动表示为行进表面Love和Rayleigh波以及P体和S体波的叠加,它们以与站点地质的弥散特征相一致的相速度和群速度传播,并由平行层近似。由于缩放系数是按比例缩放的,因此合成运动的傅立叶频谱与特定位置的经验谱匹配,因此合成运动与典型加速度计记录范围(0.02-25 Hz)内的观测值在统计上是一致的。统一危险傅立叶光谱或任何指定的傅立叶光谱也可以用作目标光谱。输出由合成加速度,速度和位移以及点应变,旋转和曲率组成,所有这些都在一个点或一组点上。这样的时间历史对于空间扩展结构的设计很有用,例如管道,桥梁和隧道。

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