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Multiple failures of API 5L X42 natural gas pipe: Experimental and computational analysis

机译:API 5L X42天然气管道多次失效:实验和计算分析

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摘要

Multiple failures of API 5L X42 (X42) coal-tar coated natural gas feeder line due to vertical jetting of high pressure erosive slurry was studied experimentally and computationally. Computational Fluid Dynamic (CFD) was used as the simulation tools to study the flow pattern, velocity distribution and strain rates on pipe surface. Experimental work was performed to determine the erosion pattern. Three different diameters of jetting sources produced three distinct impact patterns were clearly identified. These patterns were frequently referred in the experimental study. A CFD simulation result shows that the highest shear strain rate area coincides with the leakage point. These results thus support the hypothesis that it is very likely that the failure of the gas pipeline was caused by the high pressure water jet gusting from the failed welded joint of the water pipeline.
机译:通过实验和计算研究了API 5L X42(X42)煤焦油涂层天然气给水管线由于高压侵蚀性浆料的垂直喷射而造成的多次故障。计算流体动力学(CFD)被用作模拟工具来研究管道表面的流动模式,速度分布和应变率。进行实验工作以确定侵蚀模式。清楚地确定了三种不同直径的喷射源产生了三种不同的撞击方式。在实验研究中经常提到这些模式。 CFD仿真结果表明,最高剪切应变率区域与泄漏点一致。因此,这些结果支持了这样的假设,即天然气管道的故障很可能是由于管道故障的焊接接头产生的高压喷水引起的。

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