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In-plane nonlinear localised lateral buckling of straight pipelines

机译:直管平面内非线性局部横向屈曲

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摘要

The lateral buckling problem for thermally loaded pipelines is known to involve a localisation phenomenon within a limited region of the pipeline rather than an extensive global mode shape. In this paper, a strategy is presented to investigate the localised lateral buckling of pipelines under thermal loading and friction whereupon the constitutive relations are derived for thermal stress and finite strain based on a hyperelastic constitutive model. Using this hyperelastic formulation, we investigate the critical overall pipeline length above which localised buckling remains unchanged. The results show that increasing the length of the pipeline or changing the end boundary conditions when the pipeline length is greater than or equal to the critical overall length does not influence the localised buckling behaviour. The solutions to several examples are compared with the results in the literature and validated by use of the finite element package ANSYS. Parametric studies on diameter, imperfection, friction and shear deformation effects are subsequently performed on examples that identify which factors influence the localised buckling of thermal pipelines. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已知热加载管道的横向屈曲问题涉及管道有限区域内的局部化现象,而不是广泛的整体模式形状。本文提出了一种研究管道在热载荷和摩擦力作用下的局部横向屈曲的策略,并基于超弹性本构模型推导了热应力和有限应变的本构关系。使用这种超弹性公式,我们研究了临界总管道长度,在该长度以上,局部屈曲保持不变。结果表明,当管道长度大于或等于临界总长度时,增加管道长度或更改端部边界条件不会影响局部屈曲行为。将几个示例的解决方案与文献中的结果进行比较,并通过使用有限元程序包ANSYS对其进行了验证。随后在示例中进行了直径,缺陷,摩擦和剪切变形效应的参数研究,确定了哪些因素会影响热力管道的局部屈曲。 (C)2015 Elsevier Ltd.保留所有权利。

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