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Footing settlement formula based on multi-variable regression analyses

机译:基于多元回归分析的基础沉降公式

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The formulas offered so far on the settlement of raft footings provide only a rough estimate of the actual settlement. One of the best ways to make an accurate estimation is to conduct 3-dimensional finite element analyses. However, the required procedure for these analyses is comparatively cumbersome and expensive and needs a bit more expertise. In order to address this issue, in this study, a raft footing settlement formula was developed based on ninety finite element model configurations. The formula was derived using multi-parameter exponential regression analyses. The settlement formula incorporates the dimensions and the elastic modulus of a rectangular raft, vertical uniform pressure and soil moduli and Poisson's ratios up to 5 layers. In addition to this, an equation was offered for the estimation of average deflection of the raft. The proposed formula was checked against 3 well-documented case studies. The formula that is derived from 3D finite element analyses is useful in optimising the raft properties.
机译:到目前为止,有关筏基础沉降的公式仅提供了实际沉降的粗略估计。进行准确估算的最佳方法之一是进行3维有限元分析。但是,这些分析所需的过程比较繁琐且昂贵,并且需要更多的专业知识。为了解决这个问题,在这项研究中,基于九十个有限元模型的配置,开发了一个筏基沉降公式。该公式是使用多参数指数回归分析得出的。沉降公式包括矩形筏的尺寸和弹性模量,垂直均匀压力,土模量和泊松比(最多5层)。除此之外,还提供了一个方程来估算筏的平均挠度。拟议的公式是根据3个有据可查的案例研究进行核对的。从3D有限元分析得出的公式可用于优化筏性能。

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