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THE EFFECT OF SPIRAL COLD-BENDING MANUFACTURING PROCESS ON PIPELINE MECHANICAL BEHAVIOR

机译:螺旋弯曲加工工艺对管道机械性能的影响

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Large-diameter spiral-welded pipes are employed in demanding hydrocarbon pipeline applications, which require an efficient strain-based design framework. In the course of a large European project, numerical simulations on spiral-welded pipes are conducted to examine their bending deformation capacity in the presence of internal pressure referring to geohazard actions, as well as their capacity under external pressure for offshore applications in moderate deep water. Numerical models that simulate the manufacturing process (decoding and spiral cold bending) are employed. Subsequently, the residual stresses due to cold bending are used to examine the capacity of pipe under external pressure and internally-pressurized bending. A parametric analysis is conducted to examine the effect of spiral cold forming process on the structural behavior of spiral welded pipes and the effect of internal pressure on bending capacity. The results from the present study support the argument that spiral-welded pipes can be used in demanding onshore and offshore pipeline applications.
机译:大直径螺旋焊接管用于要求苛刻的碳氢化合物管道应用中,这需要基于应变的高效设计框架。在一个大型欧洲项目的过程中,对螺旋焊接管进行了数值模拟,以检查在存在内部压力(涉及地质灾害行为)的情况下其弯曲变形能力,以及在中等压力深海中海上应用在外部压力下的挠曲变形能力。使用模拟制造过程(解码和螺旋冷弯)的数值模型。随后,使用冷弯产生的残余应力来检查管道在外部压力和内部加压弯曲下的能力。进行了参数分析,以检查螺旋冷成型工艺对螺旋焊管结构性能的影响以及内部压力对弯曲能力的影响。本研究的结果支持以下论点:螺旋焊管可用于要求苛刻的陆上和海上管道应用中。

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