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Numerical simulation of cavitation washer in pipe cleaning

机译:管道清洗中空化垫圈的数值模拟

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Cavitation water jet can take advantage of the power generated from vacuole rupture to enhance the performance of the jet. Studies have shown that the pressure of the cavitation jet is 8.6-124 times as high as continuous pressure in the same pump conditions, therefore the cavitation jet is widely utilized in cutting, cleaning and descaling. The study focused on blade-type cavitation washer, using three-dimensional periodic modeling, combined with structured and unstructured grids, analyzed the two-phase Singhal cavitation model in a finite volume CFD way. By taking turbulence intensity and non-condensable gas into account, the cleaning mechanism was analyzed and flow characteristics were gain. The results show that the cavitation effect mainly produced in two zones, the blade tip area around the pipe wall and the double-blade staggered narrow gap. Throttling effect is the main cause of the cavitation effect. The cavitation number is used to evaluate the strength of the cavitation, and the cavitation number is between 0 and 0.5.
机译:空化水射流可以利用从液泡破裂产生的功率来增强喷射的性能。研究表明,空化射流的压力在相同的泵条件下的连续压力高8.6-124倍,因此空化射流广泛用于切割,清洁和除垢。该研究专注于叶片式空化垫圈,使用三维周期性建模,结合结构化和非结构化网格,以有限体积的CFD方式分析了两相单片空化模型。通过考虑湍流强度和不可凝聚的气体,分析清洁机制并流动特性获得。结果表明,气相效果主要在两个区域中产生,管壁周围的叶片尖端区域和双叶片交错窄间隙。节流效果是空化效果的主要原因。空化数用于评估空化的强度,并且空化数在0到0.5之间。

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