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Numerical analysis of wall shear patterns on the external wall of an API 5L X42 natural gas pipe

机译:API 5L X42天然气管外壁壁面剪切模式的数值分析

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摘要

Natural gas pipeline is designed and constructed according to stringent international codes and standards, thus it hardly to rupture or leaks. However, erosive water jet from leaked water pipeline is able to erode the pipe surfaces and lead to its failure. Due to complications in understanding the subsurface hydrodynamics of buried pipe condition, Computational Fluid Dynamics (CFD) is commonly used to predict its characteristics to provide multifaceted overview of the erosion phenomenon. In this study, CFD simulation of multiple water leakage surface of 0.05 m diameter at 9 atm water pipeline pressure was performed with separation distance of 0.05 m, using standard k-epsilon model (SKE) of turbulent model. Simulation results were obtained using discrete random walk to determine the instantaneous fluid velocity. It was found that different region of water shear and sand shear on natural gas pipelines was formed due to the strikes of erosive slurry at different angles. The CFD simulation results showed that sand was the primary cause of the natural gas pipe wall shear, causing cutting and deformation region on the surface of gas pipe. The erosion pattern of the three ruptured holes from the incident sites had a similar trend with those from simulated CFD results of water jetting source at angles of 45 degrees, 60 degrees, and 75 degrees. (C) 2014 Elsevier Ltd. All rights reserved.
机译:天然气管道是按照严格的国际规范和标准设计和建造的,因此几乎不会破裂或泄漏。但是,从漏水的管道喷出的腐蚀性水会侵蚀管道表面并导致其故障。由于在理解地下管道条件的地下流体动力学方面存在复杂性,因此通常使用计算流体力学(CFD)来预测其特征,以提供侵蚀现象的多方面概述。在本研究中,使用湍流模型的标准k-ε模型(SKE),在9 m的自来水管道压力下,以0.05 m的分离距离对直径为0.05 m的多个漏水表面进行了CFD模拟。使用离散随机游动确定瞬时流体速度获得了仿真结果。研究发现,由于侵蚀性泥浆在不同角度的撞击,天然气管道上形成了不同的水剪切和砂剪切区域。 CFD仿真结果表明,砂是天然气管壁剪切的主要原因,在天然气管表面产生切割和变形区域。来自入射点的三个破裂孔的侵蚀模式与水源45°,60°和75°角的CFD模拟结果相似。 (C)2014 Elsevier Ltd.保留所有权利。

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