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Local system identification analyses of the dynamic response of soil systems

机译:土壤系统动力响应的局部系统辨识分析

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摘要

The seismic behavior of massive geotechnical systems exhibits complex response patterns and mechanisms under severe loading conditions. Some of these mechanisms are localized in space, but nevertheless impact significantly the entire system response and ultimately its stability. A thorough monitoring and identification of the whole response of a distributed soil system commonly constitutes a significant challenge, and would generally be prohibitively expensive. This study presents a point-wise identification technique of soil-systems using the acceleration records provided by local instrument arrays. The newly developed identification algorithm consists of: (1) evaluation of strain tensor time histories using the motions recorded by a cluster of instruments (arranged in an appropriate multi-dimensional configuration), (2) estimation of the stress tensors corresponding to the evaluated strains utilizing a pre-selected class of constitutive models of soil response, (3) computation of accelerations associated with estimated stresses using the equations of motion, and (4) calibration and evaluation of an optimal model of soil response by minimizing discrepancies between recorded and computed accelerations. Computer simulations and analysis of centrifuge tests of a soil-quay wall system showed that the proposed technique provides an effective tool to identify local soil characteristics and properties.
机译:大型岩土系统的地震行为在恶劣的载荷条件下表现出复杂的响应模式和机制。这些机制中的一些机制位于空间中,但是仍然会严重影响整个系统的响应,并最终影响其稳定性。全面监视和识别分布式土壤系统的整体响应通常构成重大挑战,并且通常代价过高。这项研究提出了使用本地仪器阵列提供的加速度记录的土壤系统逐点识别技术。新开发的识别算法包括:(1)使用一簇仪器记录的运动来评估应变张量的时间历史(按适当的多维配置排列),(2)估计与评估的应变相对应的应力张量利用预先选择的一类土壤响应本构模型,(3)使用运动方程计算与估计应力相关的加速度,以及(4)通过最小化记录和计算之间的差异来校准和评估最佳土壤响应模型加速度。计算机模拟和土墩墙系统的离心试验分析表明,所提出的技术为识别当地土壤的特性和性质提供了有效的工具。

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