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Winkler model for dynamic response of composite caisson-piles foundations: Seismic response

机译:复合沉箱基础动力响应的Winkler模型:地震响应

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摘要

A simplified method with a dynamic Winkler model to study the seismic response of composite caisson-piles foundations (CCPF1) is developed. Firstly, with the dynamic Winkler model, the kinematic response of the CCPF subjected to vertically propagating seismic S-wave is analyzed by coupling the responses of caisson part and pile part. Secondly, a simplified model for the foundation-structure system is created with the structure simplified as a lumped mass connected to the foundation with an elastic column, and through the Fast Fourier Transformation (FFT) this model is enabled to solve transient seismic problems. Thirdly, the proposed method for the seismic response of CCPF-structure systems is verified by comparison against 3D dynamic finite element simulation, in which the Domain Reduction Method (DRM2) is utilized. Lastly, the mechanism and significance of adding piles in improving the earthquake resistance of the foundation and structure is analyzed through an example with different soil conditions. Discovered in this study is that adding piles under the caisson is an efficient way to increase seismic resistant capability of the soil-foundation-structure system, and the main mechanism of that is the elimination of the pseudo-resonance. (C) 2014 Elsevier Ltd. All rights reserved.
机译:提出了一种动态Winkler模型的简化方法来研究复合沉箱基础(CCPF1)的地震响应。首先,利用动态Winkler模型,通过考虑沉箱部分和桩部分的响应,分析了CCPF在垂直传播地震S波作用下的运动响应。其次,创建了基础结构系统的简化模型,该结构简化为通过弹性柱连接到基础的集总质量,并且通过快速傅立叶变换(FFT)可以解决瞬态地震问题。第三,通过与3D动态有限元仿真比较,验证了所提出的CCPF结构系统地震响应的方法,该方法采用了领域缩减法(DRM2)。最后,以不同土壤条件为例,分析了加桩对提高地基和结构抗震性能的机理和意义。这项研究发现,在沉箱下加桩是提高土-基础-结构系统抗震能力的有效方法,其主要机理是消除了伪共振。 (C)2014 Elsevier Ltd.保留所有权利。

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