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A boundary-type approach for the computation of vertical stresses in soil due to arbitrarily shaped foundations

机译:一种边界类型的方法,用于计算任意形状基础引起的土壤垂直应力

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Purpose-This paper aims to present a simple, yet accurate and efficient, formulation for computing the vertical soil stresses due to arbitrarily distributed surface pressures or loads over an arbitrarily shaped area. Design/methodology/approach-By leveraging on the strength of Green's theorem, the present approach is based on the formulation of the classical Boussinesq solution as a boundary-type problem over an arbitrarily shaped simply- or multiply-connected loaded region. The accuracy of the developed formulation was exemplified through a number of illustrative examples, which included both simply- and multiply-connected loaded areas. Findings-The results of the test examples presented in this work indicated a high degree of accuracy and flexibility of the developed approach despite its simplicity. Originality/value-The main contribution of the present work is the introduction of an efficient meshless approach and an algorithm that can be implemented in few lines of code on any programing platform, as either a stand-alone program or a computational module in larger engineering software packages.
机译:目的-本文旨在提出一种简单,准确而有效的公式,用于计算由于在任意形状区域上任意分布的表面压力或载荷而引起的垂直土壤应力。设计/方法/方法-利用格林定理的优势,本方法基于将经典Boussinesq解作为在任意形状的简单连接或多重连接的加载区域上的边界类型问题的公式。所开发配方的准确性通过许多示例性示例进行了说明,这些示例包括简单连接区域和多重连接区域。结果-尽管工作简单,但本工作中提供的测试示例的结果表明该方法具有较高的准确性和灵活性。原创性/价值-当前工作的主要贡献是引入了一种有效的无网格方法和一种算法,该算法可以在任何编程平台上以几行代码实现,无论是独立程序还是大型工程中的计算模块软件包。

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