不同曲率角无界柔性管道侵蚀磨损的计算分析

Latchupatula Ananya, Vivek Kumar Patel
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引用次数: 0

摘要

对于使用多相运输管道的行业来说,侵蚀已被确定为主要挑战之一。因此,针对光滑管道,特别是由于多相流而更容易受到侵蚀磨损的弯管和连接处,已经开展了大量关于浆液侵蚀磨损的实验和计算研究,但关于无界柔性管道侵蚀磨损率的研究结果尚未确定。本研究的目的是利用 CFD 分析,研究多相流体以不同曲率角(30°、50°、70°、90°)在无界柔性管道中流动时,浆液磨损对无界柔性管道材料的影响。流速(2 毫秒-1、4 毫秒-1、6 毫秒-1、8 毫秒-1、10 毫秒-1)和浓度(5%、10%、15%)是考虑的关键变量,结果发现这些特性对柔性管道有很大影响。此外,为了分析与光滑管道相比,颗粒碰撞趋势如何影响 UPF 的侵蚀磨损率,提取了 UFP 和光滑管道的流线。
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Computational analysis of erosion wear on unbounded flexible pipe of different curvature angles
For industries using multi-phase transportation pipelines, erosion has been identified as one of the main challenges. Thus, extensive experimental and computational studies on slurry erosion wear have been conducted already for smooth pipes, particularly bends and junctions which were more susceptible to erosion wear because of the flow of multi-phase, but findings of erosive wear rate on the unbounded flexible pipe are not yet established. The purpose of the current study is to examine the effects of slurry wear on the unbounded flexible pipe material using CFD analysis when multi-phase fluid is flowing in the UFP at different curvature angles (30°, 50°, 70°, 90°). Flow speed (2 ms−1, 4 ms−1, 6 ms−1, 8 ms−1, 10 ms−1) and concentration (5%, 10%, 15%) were the key variables taken into account, and is discovered that these characteristics had a substantial effect on the flexible pipe. Further, to analyze how particle collision tendency affects the erosion wear rate of UPF when compared to smooth pipe, the streamlines for the UFP and smooth pipe are extracted.
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