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Dynamic soil-structure interaction of polypod foundations

机译:Polypod基础的动态土结构互动

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The paper concerns the importance of dynamic structure-soil-structure interaction (SSSI) for structures with two or more foundations. Firstly, analysis of such polypod foundations is performed in frequency domain, considering the range 0-50 Hz and employing Green's function for wave propagation in layered soil. Normalised dynamic stiffnesses related to individual foundations and cross-coupling between two foundations are presented. To allow time-domain analysis, frequency-independent consistent lumped-parameter models (LPMs) are developed, proposing a criterion for determining which components must be included within an LPM to account adequately for the SSSI. While the methodology can be applied to polypods with any number of footings, the examples concern bipods with two footings or piles. However, the examples illustrate the methodology and prove its accuracy and efficiency. Firstly, the response is evaluated for monolithic masses placed on each foundation such that interaction can only occur via the soil. Secondly, a structure is introduced to examine and compare the coupling between the two foundations via the soil and via the structure. Different modes of dynamic SSSI are studied, finding that LPMs can provide nearly exact results for the considered problems, but with extremely few degrees of freedom compared to a finite-element model. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文涉及动态结构 - 土结构相互作用(SSSI)对具有两个或更多个基础的结构的重要性。首先,考虑到0-50Hz的范围,在分层土壤中采用绿色的波传播功能,在频域中进行这种滤波器基础的分析。提出了与两个基础之间的个体基础相关的归一化动态刚度。为了允许时域分析,开发了频率无关一致的集合参数模型(LPMS),提出了用于确定必须在LPM内包含的标准以对SSSI充分考虑哪些组件。虽然方法可以应用于具有任何距离的多孔,但是示例涉及具有两位脚踏或桩的双峰。然而,这些实施例说明了方法论并证明了其准确性和效率。首先,评估响应的响应,用于放置在每个基础上的单片肿块,使得只能通过土壤发生相互作用。其次,引入结构以通过土壤和通过结构进行检查和比较两个基础之间的耦合。研究了不同的动态SSSI模式,发现LPMS可以为所考虑的问题提供几乎精确的结果,但与有限元模型相比,具有极小的自由度。 (c)2018年elestvier有限公司保留所有权利。

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