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Upstream swirl-induction for reduction of erosion damage from slurries in pipeline bends

机译:上游涡流感应技术可减少管道弯头中的泥浆对侵蚀的损害

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Industries which transport slurries and other particle-laden liquids in pipes expend the equivalent of millions of pounds every year to repair erosion damage caused by solid particle impingement. It is against this background that the perceived relationship between pipeline erosion and imposed swirling flow fields in pipe bends is important. Definitions of flow fields and particle dispersions which minimise erosive wear are sought to facilitate the development of new designs and geometries for slurry handling equipment. Such an approach is pertinent to industries handling valuable or hazardous material in the face of increasing safety, efficiency and economic requirements. Robust erosive wear models must be developed to explore the advantages of swirl flow and subsequent particle dispersion. Collaboration between the universities of Nottingham and Southampton is aimed at the reduction of wear at critical locations in slurry handling pipelines by applying swirl-inducing pipes upstream of pipe bends. This paper details the improved particle distributions, particle impingement conditions and lower flowrates resulting from such swirl flow. These factors are discussed in terms of current erosion models and the predicted reduction in wear rates. Parallel visualisation studies using simulant particle-laden liquids augment computational modelling of the flow patterns.
机译:在管道中运输泥浆和其他含颗粒液体的行业每年花费相当于数百万英镑的费用来修复由于固体颗粒撞击而造成的侵蚀破坏。正是在这种背景下,管道腐蚀与弯管中强加的旋流场之间的可感知关系很重要。寻求使侵蚀性磨损最小的流场和颗粒分散体的定义,以促进浆液处理设备的新设计和几何形状的开发。面对日益增长的安全性,效率和经济要求,这种方法与处理有价值或危险材料的行业有关。必须开发鲁棒的侵蚀磨损模型,以探索旋流和随后的颗粒扩散的优势。诺丁汉大学和南安普敦大学之间的合作旨在通过在弯管上游应用旋涡诱导管来减少泥浆处理管道关键位置的磨损。本文详细介绍了这种旋流产生的改进的颗粒分布,颗粒撞击条件和较低的流速。这些因素将根据当前的腐蚀模型和预计的磨损率降低进行讨论。使用装有模拟颗粒的液体进行的并行可视化研究可增强流动模式的计算模型。

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