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Vertical coherency function model of spatial ground motion

机译:空间地震动的垂直相干函数模型

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摘要

Many studies have focused on horizontal ground motion, resulting in many coherency functions for horizontal ground motion while neglecting related problems arising from vertical ground motion. However, seismic events have demonstrated that the vertical components of ground motion sometimes govern the ultimate failure of structures. In this paper, a vertical coherency function model of spatial ground motion is proposed based on the Hao model and SMART 1 array records, and the validity of the model is demonstrated. The vertical coherency function model of spatial ground motion is also compared with the horizontal coherency function model, indicating that neither model exhibits isotropic characteristics. The value of the vertical coherency function has little correlation with that of the horizontal coherency function. However, the coherence of the vertical ground motion between a pair of stations decreases with their projection distance and the frequency of the ground motion. When the projection distance in the wave direction is greater than 800 meters, the coherency between the two points can be neglected.
机译:许多研究集中于水平地面运动,从而产生了许多针对水平地面运动的相干函数,而忽略了由垂直地面运动引起的相关问题。但是,地震事件表明,地震动的垂直分量有时会控制结构的最终破坏。本文基于Hao模型和SMART 1阵列记录,提出了空间地震动的垂直相干函数模型,并验证了该模型的有效性。还将空间地面运动的垂直相干函数模型与水平相干函数模型进行了比较,表明这两个模型都没有表现出各向同性的特征。垂直相干函数的值与水平相干函数的值几乎没有相关性。但是,一对站之间的垂直地面运动的相干性随其投影距离和地面运动频率而降低。当在波方向上的投影距离大于800米时,可以忽略两点之间的相干性。

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