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Titanium pipes subjected to bending moment and external pressure

机译:钛管承受弯矩和外压

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Titanium is being considered as an alternative to steel for risers and flowlines, particularly for deep-water applications. However, steel capacity formulas for local buckling and collapse are inadequate for direct application to titanium pipes subjected to bending and high external pressure. If formulas developed for steel are applied directly, the model uncertainty is unknown. Ideally, extensive model testing of titanium pipes is required. This paper discusses the use of a supplementary numerical approach based on finite element analysis. The relationship between material model parameters being input to the analysis and the collapse/buckling capacity is investigated by performing a series of nonlinear finite element analyses. The results from the non-linear response analyses are compared with experimental results for pipes with different D/t-ratios. Finally, the results are as a basis for proposing a formula for design check of titanium pipes subjected to high external pressure and bending moments.
机译:钛被认为是立管和出油管的钢替代品,特别是对于深水应用。但是,局部屈曲和坍塌的钢承载力公式不足以直接应用于承受弯曲和高外部压力的钛管。如果直接使用为钢开发的公式,则模型不确定性未知。理想情况下,需要对钛管进行广泛的模型测试。本文讨论了基于有限元分析的补充数值方法的使用。通过执行一系列非线性有限元分析,研究了输入到分析中的材料模型参数与倒塌/屈曲能力之间的关系。将非线性响应分析的结果与具有不同D / t比的管道的实验结果进行比较。最终,这些结果为提出公式提供了依据,该公式用于设计经受高外部压力和弯矩的钛管。

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