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Efficient Analytical Model for Calculation of the Influence Zone inside the Subsoil below Foundations Slabs

机译:计算地基下方地基内部影响区的有效分析模型

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This paper presents analytical approaches for evaluating the depth of the influence zone. The model focuses on variations in the ground water table. Referring to, the term influence zone is assigned to the region where the load has a substantial influence on the deformation of the soil skeleton. The first approach relies on an analytical solution based on an analysis of the Westergard subspace, assuming an elastic material response. This idea is accompanied by the effect of water pressure on the effective (skeleton) stress state. The approach provides any extremely efficient estimate of the depth of the influence zone. The proposed analytical solution is verified against the finite element analysis, assuming that the material response is driven by the modified Cam clay model. The predicted analytical result is found to be in a good agreement with the numerical solution derived with the help of the ADINA 8.1 general-purpose finite element code. The presented results further suggest that this analytical procedure can be applied to solve the interaction problem of the slab and the subsoil and its progress in the structural process, namely by varying the ground water table.
机译:本文提出了评估影响区深度的分析方法。该模型着重于地下水位的变化。提及,术语影响区指的是载荷对土壤骨架变形有实质性影响的区域。第一种方法依赖于基于Westergard子空间分析的分析解决方案,假设材料具有弹性。这个想法伴随着水压对有效(骨架)应力状态的影响。该方法提供了对影响区深度的任何极其有效的估计。假设材料响应是由改进的Cam clay模型驱动的,则所提出的分析解决方案已通过有限元分析进行了验证。发现预测的分析结果与借助ADINA 8.1通用有限元代码得出的数值解非常吻合。提出的结果进一步表明,该分析程序可用于解决板与底土的相互作用问题及其在结构过程中的进展,即通过改变地下水位。

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