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Failure analysis and prediction of pipes due to the interaction between multiphase flow and structure

机译:多相流与结构相互作用的管道失效分析与预测

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摘要

Frequently found in piping, erosion failures may lead to the leakage of pipes and even damage the whole system. Erosion is a form of material degradation that involves electrochemical corrosion and mechanical wear processes encountered on the surface of metal pipes. Research on the erosion-corrosion mechanism indicates that the erosion mainly results from the interactions between the pipe surface and the fluid traveling along the surface. This paper studied multiphase flow induced erosion-corrosion in pipes, mainly focusing on the interactions between the multiphase flow and the structure. In order to evaluate the erosion effects caused by the flow and the coupled dynamics, the multiphase flow regimes, flow dynamics parameters and the distribution of phases on different positions of the boundary layer in REAC pipe inner surface were analyzed. The CFD simulation results proved that the location, rate and the extent of erosion failures on the pipe surfaces can be well predicted, as compared with actual instances. Practically, this method can be used in optimizing the design of the inner sleeves of pipes.
机译:在管道中经常发现,腐蚀故障可能导致管道泄漏,甚至损坏整个系统。腐蚀是材料降解的一种形式,涉及金属管表面上发生的电化学腐蚀和机械磨损过程。对冲蚀-腐蚀机理的研究表明,冲蚀主要是由于管道表面与沿该表面流动的流体之间的相互作用引起的。本文研究了管道中多相流引起的腐蚀-腐蚀,主要研究了多相流与结构之间的相互作用。为了评估由流动和耦合动力学引起的腐蚀作用,分析了REAC管内表面边界层不同位置的多相流态,流动力学参数和相分布。 CFD仿真结果证明,与实际情况相比,可以很好地预测管道表面的腐蚀破坏的位置,速度和程度。实际上,该方法可用于优化管道内套管的设计。

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