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Engineering Source Model For Strong Ground Motion

机译:强大地面运动的工程源模型

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摘要

A new engineering source model consistent with seismological concepts for simulating strong-motion accelerograms (SMAs) is presented in this paper. The source region is modeled as a horizontally layered elastic medium to cater for site dependency. The moment field acting on the rupture plane is decomposed into space and time functions, which is a novel concept. The spatial and temporal components are determined for six well-recorded earthquakes using the corresponding recorded SMA. The obtained spatial variations indicate that they can be modeled as an anisotropic random field. The temporal components of all the six events are transients, with typical frequency spectra. Based on these results, a simplified source model is proposed for the synthesis of SMA during strong earthquakes. The model is validated by simulating strong-motion acceleration time histories at stations deliberately kept out of the modeling exercise. It is found that the present model is efficient in simulating observed time histories. The proposed model is also illustrated by simulating an ensemble of acceleration time histories for the Kutch earthquake of 26th January 2001 using only the few known source parameters.
机译:本文提出了一种符合地震学概念的新工程源模型,用于模拟强运动加速度图(SMA)。将源区域建模为水平分层的弹性介质,以适应站点依赖性。作用在破裂面上的矩场被分解为时空函数,这是一个新颖的概念。使用相应的已记录SMA确定六个记录良好的地震的时空分量。所获得的空间变化表明可以将其建模为各向异性随机场。所有六个事件的时间成分都是瞬态的,具有典型的频谱。基于这些结果,提出了一种简化的震源模型,用于合成强地震中的SMA。通过模拟故意不在建模练习中的站点的强运动加速时间历史来验证该模型。发现本模型在模拟观察到的时间历史方面是有效的。通过仅使用少数几个已知震源参数模拟2001年1月26日库奇地震的加速时间历史集合,就说明了所提出的模型。

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