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Application of low-order potential solutions to higher-order vertical traction boundary problems in an elastic half-space

机译:低阶势解在弹性半空间中高阶垂直牵引边界问题中的应用

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摘要

New solutions of potential functions for the bilinear vertical traction boundary condition are derived and presented. The discretization and interpolation of higher-order tractions and the superposition of the bilinear solutions provide a method of forming approximate and continuous solutions for the equilibrium state of a homogeneous and isotropic elastic half-space subjected to arbitrary normal surface tractions. Past experimental measurements of contact pressure distributions in granular media are reviewed in conjunction with the application of the proposed solution method to analysis of elastic settlement in shallow foundations. A numerical example is presented for an empirical ‘saddle-shaped’ traction distribution at the contact interface between a rigid square footing and a supporting soil medium. Non-dimensional soil resistance is computed as the reciprocal of normalized surface displacements under this empirical traction boundary condition, and the resulting internal stresses are compared to classical solutions to uniform traction boundary conditions.
机译:推导并提出了双线性垂直牵引边界条件势函数的新解。高阶牵引力的离散化和插值以及双线性解的叠加提供了一种方法,用于形成均质各向同性弹性半空间在任意法向表面牵引下的平衡状态的近似解和连续解。结合所提出的求解方法在浅层基础弹性沉降分析中的应用,回顾了过去在粒状介质中接触压力分布的实验测量结果。给出了一个数值示例,用于说明刚性方脚与支撑土壤介质之间的接触界面处的“鞍形”牵引力经验分布。在此经验牵引边界条件下,无量纲的土壤阻力计算为归一化表面位移的倒数,并将所得内应力与统一牵引边界条件的经典解进行比较。

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