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Rigid Foundations Resting on an Elastic Layered Soil

机译:坚硬的基础搁置在弹性层状土壤上

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摘要

A rigid foundation of arbitrary shape resting on a stratified half space (soil), with specific geometrical and elastic properties for its horizontal layers, is examined under the action of a vertical load placed anywhere on the foundation area. On the basis of a purely analytical treatment of the deformability of the soil surface, i.e. without using a finite element discretization of the layered soil mass, a general method is developed in order to determine the contact soil pressures and the resulting settlements through an easily implemented numerical procedure. The possible presence of "inactive" foundation parts not being in contact with the soil surface is taken into account. Parametric studies are performed showing the influence of the variability of the soil layers, as well as of the vertical load location, on the contact pressures developed. In this context, for the cases of a rectangular and a circular foundation the area borders for the location of a vertical load are determined, either for the development of compressive soil pressures all over the footing (core), or for allowing the existence of some inactive part without contact with the soil (zero contact pressure), not exceeding the half of the total foundation surface (limit core).
机译:在放置在基础区域任何位置的垂直载荷的作用下,检查放置在分层半空间(土壤)上具有任意几何形状和弹性特性的任意形状的刚性基础。在单纯分析土壤表面变形能力的基础上,即不使用层状土体的有限元离散化方法,开发了一种通用方法,以便通过易于实施的方法确定接触土压力和所产生的沉降数值程序。考虑到可能存在的“非活动”基础部件未与土壤表面接触。进行了参数研究,显示了土层变化以及垂直载荷位置对所产生的接触压力的影响。在这种情况下,对于矩形和圆形基础,要确定垂直载荷位置的区域边界,或者是为了在整个基础(核心)上形成压缩土压力,或者是为了允许存在一些不与土壤接触的非活动部分(零接触压力),不超过基础总表面积(极限芯)的一半。

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