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GBT-based buckling analysis of steel cylindrical shells under combinations of compression and external pressure

机译:基于GBT的圆柱壳在压缩和外压作用下的屈曲分析

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This paper reports the results of an investigation on the use of Generalised Beam Theory (GBT) to assess the buckling behaviour of steel cylindrical shells (pipes, tubes and pressure vessels) acted by combinations of axial compression and external lateral pressure. Initially, the derivation of an adequate GBT formulation is addressed - it (i) incorporates all the effects stemming from the presence of longitudinal and/or hoop stresses (the latter act in the circumferential direction), and (ii) takes into account the destabilising influence associated with the follower nature of the external pressure, which remains normal to the shell wall along the deformation process. Then, after numerically implementing the above formulation, by means of GBT-based beam finite elements, its application and capabilities are illustrated through the presentation and discussion of numerical results concerning the buckling behaviour of (i) pressure vessels and pipes acted by external pressure and (ii) tubes subjected to combinations of compression and external pressure. For validation purposes, most GBT results are compared with values either available in the literature or yielded by Ansys shell finite element analyses.
机译:本文报告了使用广义梁理论(GBT)评估轴向压缩和外部侧向压力作用下的钢制圆柱壳(管,管和压力容器)的屈曲行为的研究结果。最初,解决了适当的GBT公式的推导-(i)合并了由于存在纵向应力和/或环向应力(环向作用于圆周方向)而产生的所有影响,并且(ii)考虑了不稳定因素与外部压力随动特性相关的影响,外部压力随变形过程垂直于壳壁。然后,在对上述公式进行数值实现后,借助基于GBT的梁有限元,通过介绍和讨论有关(i)受外部压力和压力作用的压力容器和管道的屈曲行为的数值结果,说明了其应用和性能。 (ii)受压缩和外压作用的管子。为了进行验证,将大多数GBT结果与文献中提供的值或通过Ansys Shell有限元分析得出的值进行比较。

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