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首页> 外文期刊>International Journal of Solids and Structures >Dynamic soil stiffness for foundation piles: Capturing 3D continuum effects in an effective, non-local 1D model
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Dynamic soil stiffness for foundation piles: Capturing 3D continuum effects in an effective, non-local 1D model

机译:基础桩的动态土刚度:捕获3D连续效应在有效,非本地1D模型中

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摘要

A method is presented to accurately capture the 3D interaction phenomena of a foundation pile embedded in soil, in a computationally efficient non-local 1D model. It is shown how to extract the global stiffness kernels from simulations with the 3D inhomogeneous continuum, and implement them in a 1D non-local Winkler-type model that can subsequently serve as a stand-alone, condensed substructure. The presented method for obtaining the kernels removes the need to assume certain distributions for these functions. We show that the method is very versatile, and yields accurate results for a wide range of pile geometries and soil stiffness profiles, over the full depth of the embedded pile. For the dynamic case, the discretized global stiffness kernels (matrices) become complex-valued (they include soil stiffness, inertia and damping), and the 1D model proves to be capable of mimicking also the out-of-phase part of the response. The method being straightforward and fast, the engineering community is served the benefits of accuracy (3D model) and speed (1D model), without the need of empiric tuning. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种方法以精确地捕获嵌入土壤中的基础桩的3D相互作用现象,在计算上有效的非局部1D模型中。图3示出了如何利用3D非均匀连续体从模拟中提取全局刚度内核,并在1D非本地Winkler型模型中实现它们,随后可以用作独立的凝聚的子结构。获取内核的呈现方法消除了对这些函数的某些分布的需求去除。我们表明该方法非常通用,并在嵌入式桩的全深度上产生各种桩几何和土壤刚度型材的准确结果。对于动态案例,离散的全局刚度核(矩阵)变得复杂(它们包括土壤刚度,惯性和阻尼),并且1D模型证明能够模仿响应的一部分外部。该方法简单快速,工程界提供了准确性(3D模型)和速度(1D模型)的好处,而无需经验调整。 (c)2017 Elsevier Ltd.保留所有权利。

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