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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Effects of boundary conditions on testing of pipes and finite element modelling
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Effects of boundary conditions on testing of pipes and finite element modelling

机译:边界条件对管道测试和有限元建模的影响

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摘要

The design of many submarine pipelines, especially for operating in deep water, relies on accurate test results for the local buckling collapse of pipes subjected to bending loading. Recent test results have shown apparently anomalous values of axial tensile and compressive strains in comparison to the values that would be expected on the basis of simple bending theory. This could have important consequences for the efficacy of the design factors derived using these anomalous results. Examples of anomalous test results are given in the paper and the cause of the differences between the strain values obtained in the tests and those expected on the basis of simple bending theory are explained using finite element modelling. The major point is that the general application of the simplified engineering theory of bending can be erroneous when ovalisation is imposed or, on the contrary, the boundary conditions of the section are restrained from ovalising deformations. This is a crucial limit state for the design of onshore and offshore pipelines.
机译:许多海底管道的设计,尤其是用于深水作业的管道,依赖于承受弯曲载荷的管道局部屈曲塌陷的准确测试结果。与基于简单弯曲理论所预期的值相比,最近的测试结果显示出轴向拉伸应变和压缩应变的明显异常值。这可能会对使用这些异常结果得出的设计因子的功效产生重要影响。本文给出了异常测试结果的示例,并使用有限元建模解释了在测试中获得的应变值与基于简单弯曲理论所预期的应变值之间存在差异的原因。重点是,当施加椭圆化时,简化的弯曲工程理论的一般应用可能会出错,或者相反,截面的边界条件会受到椭圆化变形的限制。这是陆上和海上管道设计的关键极限状态。

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