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Multi-directional force-displacement response of underground pipe in sand

机译:地下管道在砂土中的多向力-位移响应

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摘要

A methodology is presented to evaluate multi-directional force-displacement relationships for soil-pipeline interaction analysis and design. Large-scale tests of soil reaction to pipe lateral and uplift movement in dry and partially saturated sand are used to validate plane strain, finite element (FE) soil, and pipe continuum models. The FE models are then used to characterize force versus displacement performance for lateral, vertical upward, vertical downward, and oblique orientations of pipeline movement in soil. Using the force versus displacement relationships, the analytical results for pipeline response to strike-slip fault rupture are shown to compare favorably with the results of large-scale tests in which strike-slip fault movement was imposed on 250 and 400 mm diameter high-density polyethylene pipelines in partially saturated sand. Analytical results normalized with respect to maximum lateral force are provided on 360 degrees plots to predict maximum pipe loads for any movement direction. The resulting methodology and dimensionless plots are applicable for underground pipelines and conduits at any depth, subjected to relative soil movement in any direction in dry or saturated and partially saturated medium to very dense sands.
机译:提出了一种方法来评估土管相互作用分析和设计的多向力-位移关系。在干燥和部分饱和的砂土中对管道横向和隆起运动进行土壤反应的大规模测试,可以验证平面应变,有限元(FE)土和管道连续模型。然后,将有限元模型用于表征土壤中管道运动的横向,垂直向上,垂直向下和倾斜方向的力与位移性能。利用力与位移的关系,对走滑断层破裂的管道响应的分析结果显示出可以与大规模试验的结果相比较,在大规模试验中,走滑断层运动是对直径为250和400 mm的高密度进行的部分饱和沙子中的聚乙烯管道。相对于最大横向力标准化的分析结果在360度曲线图上提供,以预测任何运动方向的最大管道载荷。所得的方法学和无因次图适用于任何深度的地下管道和管道,在干燥或饱和或部分饱和的介质至非常稠密的砂土中,在任何方向上都受到土壤相对运动的影响。

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