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Mechanical behaviour analysis of buried pressure pipeline crossing ground settlement zone

机译:地下压力管道穿越地面沉降区的力学行为分析

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Numerical simulation model of buried pipeline crossing ground settlement zone was established considering pipeline-soil interaction. Mechanical behaviour of the buried pipeline was investigated, and effects of ground settlement, pipeline parameters and surrounding soil parameters on mechanical behaviour of the buried pipeline were discussed. These results show that there are two high stress areas on both sides of the dividing plane. High stress areas are oval on the top and bottom of the pipeline. Z-shape bending deformation appears under the action of ground settlement. In ground settlement zone, axial strain on the top of the pipeline is compression strain, and axial strain on the bottom of the pipeline is tension strain. On the contrary, they are tension strain and compression strain respectively in no settlement zone. Bending deformation, axial strain and plastic strain of the buried pipeline increase with the increase in ground settlement. Von Mises stress, high stress area, axial strain and plastic strain of the buried pipeline increase with the increasing diameter-thick ratio and internal pressure, but they decrease with the increase in buried depth. Diameter-thick ratio and internal pressure have a small effect on the bending deformation of the buried pipeline. Bending deformation decreases with the increase in buried depth in ground settlement zone. Von Mises stress and high stress area increase with the increasing surrounding soil's elasticity modulus and cohesion, but they increase first and then decrease with the increase in Poisson's ratio. Bending deformation of the pipeline in no settlement zone increases with the increase in elasticity modulus and Poisson's ratio, but it is affected little by the cohesion. Axial strain and plastic strain have a bigger relationship with the elasticity modulus and Poisson's ratio. Axial strain and plastic strain of the buried pipeline increase with the increase in cohesion, and the change rates increase with the increase in ground settlement.
机译:考虑管道-土壤相互作用,建立了地下管道穿越地面沉降区的数值模拟模型。研究了地下管道的力学行为,讨论了地面沉降,管道参数和周围土壤参数对地下管道力学行为的影响。这些结果表明,在分隔平面的两侧都有两个高应力区域。高应力区域在管道的顶部和底部为椭圆形。在地面沉降作用下出现Z形弯曲变形。在地面沉降区中,管道顶部的轴向应变为压缩应变,管道底部的轴向应变为拉伸应变。相反,它们在无沉降区分别是拉伸应变和压缩应变。埋地管道的弯曲变形,轴向应变和塑性应变随着地面沉降的增加而增加。埋管的冯米塞斯应力,高应力区,轴向应变和塑性应变随着直径-厚度比和内部压力的增加而增加,但随着埋深的增加而减小。直径厚比和内部压力对埋地管道的弯曲变形影响很小。弯曲变形随着地面沉降区埋深的增加而减小。冯·米塞斯应力和高应力区域随周围土壤的弹性模量和内聚力的增加而增加,但随着泊松比的增加先增加后减少。管道在无沉降区的弯曲变形随弹性模量和泊松比的增加而增加,但受内聚力的影响很小。轴向应变和塑性应变与弹性模量和泊松比具有更大的关系。地下管道的轴向应变和塑性应变随着内聚力的增加而增加,变化率随地面沉降的增加而增加。

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