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EFFECT OF REELING ON PIPELINE STRUCTURAL PERFORMANCE

机译:收卷对管道结构性能的影响

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摘要

The winding and unwinding of a pipeline in the reeling installation process involves repeated excursions into the plastic range of the material, which induce ovality and changes to the mechanical properties. We present two modeling schemes for simulating reeling/unreeling capable of capturing these changes and can be used to assess their impact on the structural performance of the pipeline in deeper waters. In the first model, the complete 3-D reeling process is simulated through a finite element model that includes proper treatment of contact and nonlinear kinematic hardening for plasticity. The second model includes the pipe geometric cross sectional nonlinearities, contact, and nonlinear kinematic hardening, but variations along the length of the line are neglected. Instead, an axially uniform curvature/tension loading history is applied that corresponds to that experienced by a point of the line during the process. The two models are used to simulate a set of experiments in which tubes were wound and unwound on a model reel at different values of tension. Both models are shown to reproduce the induced ovality and elongation very well. Several of the reeled tubes were subsequently tested under external pressure demonstrating the effect of the reeling cycle on structural performance. The two models are shown to also reproduce the decrease in collapse pressure as a function of the applied back tension. Comparison of the results of such simulations highlight when a fully 3-D model is required and when the simpler 2-D model is adequate for evaluating the structural performance of a reeled pipe.
机译:在卷盘安装过程中,管道的缠绕和解绕涉及到材料的塑性范围内的反复偏移,这会引起椭圆度并改变机械性能。我们提出了两种建模方案,用于模拟能够捕获这些变化的绕线/放线,并可以用来评估其对深水管道结构性能的影响。在第一个模型中,通过有限元模型来模拟完整的3-D卷取过程,该模型包括对接触点的适当处理和可塑性的非线性运动硬化。第二个模型包括管道几何横截面的非线性,接触和非线性运动硬化,但是忽略了沿线长度的变化。取而代之的是,施加轴向均匀的曲率/张力加载历史,该历史对应于过程中线的一点所经历的曲率/张力。这两个模型用于模拟一组实验,在该实验中,将管以不同的张力值在模型卷轴上缠绕和展开。两种模型均显示出很好地再现了诱导的椭圆度和伸长率。随后在外部压力下测试了几根绕线管,证明了绕线循环对结构性能的影响。所示的两个模型还再现了坍塌压力随所施加的背张力而降低的情况。此类仿真结果的比较突出显示了何时需要完整的3D模型以及何时更简单的2D模型足以评估卷管的结构性能。

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