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Effect of surrounding soil on stress-strain response of buried pipelines under ground loads

机译:地基条件下周围土壤对埋地管道应力应变响应的影响

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In order to determine the stress-strain response of buried pipelines under the ground load, the pipeline-soil coupling finite element model was established. The mechanical behaviours of buried pipelines in the soil stratum and the rock stratum, as well as the effects of surrounding soil's elasticity modulus, Poisson's ratio and cohesion on stress and strain of buried pipelines were investigated. The results show that the maximum von Mises stress, high stress area, axial strain and plastic strain increase with the increasing ground load. Buried pipeline in the soil stratum is more prone to failure than in the rock stratum under the same ground load. The maximum axial compressive strain appears at the bottom of buried pipelines when there is no buckling, and the maximum tensile strain appears on the two sides. High stress area, the axial strain, the plastic strain and the plastic area decrease with the increase of the soil's elasticity modulus and cohesion. But the surrounding soil's Poisson's ratio has a small effect on the stress and strain of buried pipelines under the ground load. The results can provide a theoretical basis and reference for safety evaluation, repair and maintenance of buried pipelines.
机译:为了确定地下管道在地面荷载作用下的应力-应变响应,建立了管道-土壤耦合有限元模型。研究了地下管线在土层和岩石层的力学行为,以及周围土壤的弹性模量,泊松比和内聚力对地下管线应力和应变的影响。结果表明,随着地面荷载的增加,最大冯·米塞斯应力,高应力区,轴向应变和塑性应变增大。在相同地面荷载下,土壤层中的地下管线比岩石层中的管线更容易失效。当没有屈曲时,最大轴向压缩应变出现在地下管道的底部,而最大拉伸应变出现在两侧。高应力区,轴向应变,塑性应变和塑性区随着土壤弹性模量和内聚力的增加而减小。但是周围土壤的泊松比对地面荷载下埋地管道的应力和应变影响很小。研究结果可为埋地管道的安全评估,维修和保养提供理论依据和参考。

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