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Blind identification of site effects and bedrock motion from surface response signals

机译:根据表面响应信号盲目识别场地影响和基岩运动

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摘要

A method for blind identification of site effects from two nearby ground surface response signals is presented. The proposed approach makes use of ground surface accelerations from two nearby stations to back-calculate the transfer functions of both sites and their common bedrock motion. Seismic analysis of structures cannot be carried out accurately unless site effects are taken into account. Moreover, presently available empirical attenuation relationships for predicting ground surface motions are only useful if site effects are considered. While an extensive collection of analytical and numerical techniques is available to analyze ground responses induced by bedrock motions, their accuracy depends on a priori knowledge of site properties and the availability of bedrock motions. There are techniques based on direct/indirect measurements-such as spectral analysis of surface waves (SASW), and material testing of borehole samples-however, responses predicted by their output do not necessarily reflect site behavior during strong motions. As such, the estimation of site response from acceleration data recorded on the ground surface during real-life events is a key capability. In the method proposed herein, the site response is identified from recorded ground surface accelerations at two nearby stations through a blind identification technique, under the assumption that the unknown bedrock motion is identical for both stations and those two stations have different transfer functions. Most of the existing site response identification methods rely on a strategically chosen reference station, and the present approach obviates this limitation. We demonstrate the performance of this new approach using a synthetic, but adequately realistic, example.
机译:提出了一种从两个附近地面响应信号中盲目识别站点影响的方法。所提出的方法利用了来自两个附近站点的地表加速度来反算两个站点的传递函数及其共同的基岩运动。除非考虑现场影响,否则无法准确进行结构的地震分析。而且,仅在考虑了场地效应的情况下,目前可用的经验衰减关系用于预测地表运动。尽管可以使用大量分析和数值技术来分析由基岩运动引起的地面响应,但其准确性取决于现场属性的先验知识和基岩运动的可用性。有一些基于直接/间接测量的技术,例如表面波的频谱分析(SASW)和钻孔样品的材料测试,但是,由其输出预测的响应不一定反映强烈运动期间的位置行为。这样,根据现实事件中记录在地面上的加速度数据估算站点响应是一项关键功能。在本文提出的方法中,在假设两个站的未知基岩运动相同且这两个站具有不同传递函数的前提下,通过盲目识别技术从记录的附近两个站的地面加速度中识别出站点响应。大多数现有的站点响应识别方法都依赖于战略选择的参考站,并且本方法消除了此限制。我们使用一个综合但足够现实的示例来演示这种新方法的性能。

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