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穿越沉降地层的埋地钢质管道力学行为的数值模拟

Numerical Modeling of Mechanical Behavior for Buried Steel Pipelines Crossing Subsidence Strata.

作者信息

Zhang J, Liang Z, Han C J

机构信息

School of Mechatronic Engineering, Southwest Petroleum University, Chengdu, China.

出版信息

PLoS One. 2015 Jun 23;10(6):e0130459. doi: 10.1371/journal.pone.0130459. eCollection 2015.

Abstract

This paper addresses the mechanical behavior of buried steel pipeline crossing subsidence strata. The investigation is based on numerical simulation of the nonlinear response of the pipeline-soil system through finite element method, considering large strain and displacement, inelastic material behavior of buried pipeline and the surrounding soil, as well as contact and friction on the pipeline-soil interface. Effects of key parameters on the mechanical behavior of buried pipeline were investigated, such as strata subsidence, diameter-thickness ratio, buried depth, internal pressure, friction coefficient and soil properties. The results show that the maximum strain appears on the outer transition subsidence section of the pipeline, and its cross section is concave shaped. With the increasing of strata subsidence and diameter-thickness ratio, the out of roundness, longitudinal strain and equivalent plastic strain increase gradually. With the buried depth increasing, the deflection, out of roundness and strain of the pipeline decrease. Internal pressure and friction coefficient have little effect on the deflection of buried pipeline. Out of roundness is reduced and the strain is increased gradually with the increasing of internal pressure. The physical properties of soil have a great influence on the mechanical properties of buried pipeline. The results from the present study can be used for the development of optimization design and preventive maintenance for buried steel pipelines.

摘要

本文研究了穿越沉降地层的埋地钢质管道的力学行为。该研究基于有限元法对管道 - 土壤系统的非线性响应进行数值模拟,考虑了大应变和位移、埋地管道及周围土壤的非弹性材料行为,以及管道 - 土壤界面的接触和摩擦。研究了关键参数对埋地管道力学行为的影响,如地层沉降、径厚比、埋深、内压、摩擦系数和土壤性质。结果表明,管道的最大应变出现在管道的外过渡沉降段,其横截面呈凹形。随着地层沉降和径厚比的增加,不圆度、纵向应变和等效塑性应变逐渐增大。随着埋深增加,管道的挠度、不圆度和应变减小。内压和摩擦系数对埋地管道的挠度影响较小。随着内压增加,不圆度减小而应变逐渐增大。土壤的物理性质对埋地管道的力学性能有很大影响。本研究结果可用于埋地钢质管道的优化设计和预防性维护的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0449/4477899/620b83aa13aa/pone.0130459.g001.jpg

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