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Lateral force-displacement prediction for buried pipe under different effective stress condition

机译:不同有效应力条件下埋管横向力位移预测

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The aim of the present study is to elucidate the soil-pipe interaction in saturated sand with different effective stress. A force-displacement curve that took into account the variation of the effective stress was formulated based on the results of lateral loading experiments on a model pipe. To reproduce liquefaction experimentally, the effective stress of the soil bed was controlled by the upward seepage induced by a hydraulic gradient. The model pipe was pulled laterally under either displacement or load control. The experimental results indicate that the normalised force-displacement relationships can be well approximated by hyperbolic curves under each hydraulic gradient. When the variation in effective stress is reflected in the submerged unit weight of the soil, the two coefficients of the hyperbolic curves also show a hyperbolic dependence on the unit weight, and the ultimate resistive force increases in proportion to the unit weight. The predicted force-displacement curve fits relatively well to the experimental results.
机译:本研究的目的是阐明具有不同有效应力的饱和砂土中的土管相互作用。根据模型管道上的横向载荷实验结果,制定了考虑有效应力变化的力-位移曲线。为了通过实验再现液化,通过水力梯度引起的向上渗漏来控制土壤床的有效应力。在位移或负载控制下,将模型管横向拉。实验结果表明,在每个水力梯度下,双曲线可以很好地近似归一化的力-位移关系。当有效应力的变化反映在土壤的淹没单位重量中时,双曲线的两个系数也显示出对单位重量的双曲线依赖性,并且最终阻力与单位重量成正比。预测的力-位移曲线与实验结果比较吻合。

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