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Three-Dimensional Analysis of Buried Steel Pipes under Moving Loads

机译:移动荷载下埋地钢管的三维分析

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The three-dimensional response of buried steel pipes under vehicle loads is investigated using the finite element analysis. The analysis is conducted using the finite element program ABAQUS. The effects of the vehicle parameters, pipeline parameters and soil parameters on the response of the buried pipeline were discussed. The results indicate that the maximum principal stresses in a buried pipe under vehicle loads are significant for burial depths of less than 1 m. The maximum principal stresses of the buried pipeline decrease as the burial depth, vehicle velocity and surrounding soil’s elasticity modulus increase. For small burial depths, the stresses in buried pipes caused by vehicle motion in the direction normal to the pipe axis are more critical. However, the effects of motion direction are insignificant when the burial depth and the surrounding soil’s elasticity modulus increase. As the diameter of a buried pipe decreases, the maximum principal stresses increase.
机译:利用有限元分析方法,研究了车辆荷载作用下埋地钢管的三维响应。使用有限元程序ABAQUS进行分析。讨论了车辆参数,管道参数和土壤参数对埋管响应的影响。结果表明,对于埋深小于1 m的车辆,埋管中的最大主应力是很大的。随着埋深,车速和周围土壤弹性模量的增加,埋藏管道的最大主应力减小。对于较小的埋葬深度,车辆沿垂直于管道轴线的方向的运动引起的埋入管道中的应力更为关键。但是,当埋深和周围土壤的弹性模量增加时,运动方向的影响就微不足道了。随着埋管直径的减小,最大主应力增大。

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