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Soil-buried pipeline interaction for vertical downwards relative offset

机译:垂直向下相对偏移的土埋管道相互作用

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摘要

A new perspective is presented on the interaction effects for the vertical downwards offset of a pipeline relative to its surrounding soil. Instead of estimating the interaction force via shallow footing bearing capacity theory, as per common pipeline design practice, we assume that the vertical movement of the pipeline in uniform soil is governed by mechanisms similar to the lateral loading of a circular pile up to its limit load. The validity of this assumption is investigated numerically with the finite element limit analysis method, and design expressions are derived for the maximum interaction force on pipelines embedded in cohesive and granular soils. For the common case of buried pipelines built in sand-backfilled trenches, the same numerical method is employed to determine the necessary trench dimensions so as to avoid interaction with the possibly much stiffer native soil that results in a significant increase in the force applied on the pipeline during ground movement. The described approach can be employed in project-specific analyses to optimize trench dimensions, and thus avoid unnecessary excavation costs or mitigation measures.
机译:对于管道相对于其周围土壤垂直向下偏移的相互作用效应,提出了一个新的观点。我们没有按照普通的管道设计实践,而是根据浅层基础承载力理论来估算相互作用力,而是假设管道在均匀土壤中的垂直运动是由类似于圆形桩的横向载荷直至其极限载荷的机制控制的。 。利用有限元极限分析方法对这一假设的有效性进行了数值研究,并推导了设计公式,以求得对粘性土和颗粒状土中埋设的管道的最大相互作用力。对于埋在沙子回填沟渠中的地下管道的常见情况,采用相同的数值方法来确定必要的沟渠尺寸,以避免与可能更硬的原生土壤相互作用,从而导致施加在管道上的力显着增加。地面运动期间的管道。所描述的方法可用于特定项目的分析中,以优化沟槽尺寸,从而避免不必要的开挖成本或缓解措施。

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