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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Mechanical behavior of buried composite pipelines subjected to strike-slip fault movement
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Mechanical behavior of buried composite pipelines subjected to strike-slip fault movement

机译:埋藏复合管道的力学行为经受防滑故障运动

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摘要

Buried composite pipelines crossing active faults can be deformed significantly due to strike-slip fault movement. Because of the problem complexity arising from material mechanical behavior and imposed large deformation, a numerical analysis was conducted using a nonlinear finite element approach. The lateral displacement incrementally was imposed normal to the pipe axis until one of the pipe layers failed based on the Hashin failure criteria. The effective factors on the buried composite pipeline performance, such as the pipe dimensions, composite lay-up, and soil stiffness, were studied parametrically. The results showed that the winding angle of the composite pipe has significant effects on the response of the pipe subjected to the fault movement, therefore determining an optimum winding angle is very important for practical engineering designs. In addition, the results show that the effect of changing the pipe diameter cannot be predicted easily, and also it is depended on the winding angle. However, changing the soil stiffness did not change the optimum winding angle. Furthermore, the comparison conducted for the studied composite and steel pipes at the similar simulation conditions showed that the composite pipe has a better response until the onset of the failure, and the composite pipe could be considered as a suitable replacement for the conventional buried steel pipeline.
机译:由于防滑故障运动,埋入的复合管道交叉主动故障可能会显着变形。由于材料力学行为产生的复杂性并施加大变形,因此使用非线性有限元方法进行数值分析。横向位移逐渐施加到管道轴线,直到管道层的一个基于Hashin故障标准失败。参数研究了掩埋复合管道性能的有效因素,例如管尺寸,复合铺设和土壤刚度。结果表明,复合管的绕组角对经受故障运动的管道的响应具有显着影响,因此确定最佳绕组角对于实际工程设计非常重要。此外,结果表明,不容易预测改变管道直径的效果,并且还依赖于绕组角度。然而,改变土壤刚度并没有改变最佳绕组角度。此外,在类似的模拟条件下对所研究的复合材料和钢管进行的比较表明,复合管具有更好的响应直到故障发生,并且复合管可以被认为是传统埋藏钢管道的合适替代品。

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