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首页> 外文期刊>International communications in heat and mass transfer >The effects of viscoelastic fluid on the cavitation inception and development within a centrifugal pump: An experimental study
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The effects of viscoelastic fluid on the cavitation inception and development within a centrifugal pump: An experimental study

机译:粘弹性流体对离心泵内部空化初始开发的影响:实验研究

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Cavitation in a transparent centrifugal pump has been experimentally investigated using viscoelastic fluid. Viscoelastic fluids are aqueous solutions of polyacrylamide with different concentrations of 100, 200, and 400 ppm at room temperature. The cavitation inception and the bubble population through the blade passages were extracted using two different methods: (a) visually observing the population of bubbles in the flow and (b) pump characteristic curves analysis. The results illustrated that the polymer concentration, cavitation number, and degradation can dramatically affect the bubble initiation and development. Bubble initiation was postponed in the case of polymer solutions and this effect was more significant in higher concentrations. Besides, at the same conditions, the population of the bubbles in the polymer solutions significantly decreased compared to the water, especially at higher concentrations. This effect was decreased with decreasing the cavitation number. Also, the fresh polymer solutions had lower critical cavitation numbers in comparison with the tap water. In addition to the fresh polymer solution, the effect of the degradation was investigated in the current study, too. Results showed that with degradation, bubble initiation occurred sooner and the population of the bubbles significantly increased compared to the fresh solutions.
机译:通过粘弹性流体实验研究了透明离心泵中的空化。粘弹性流体是聚丙烯酰胺的水溶液,在室温下具有不同浓度的100,200和400ppm。使用两种不同的方法提取通过刀片通道的空化初始化和气泡种群:(a)在视觉上观察流动中的气泡群和(b)泵特性曲线分析。结果表明,聚合物浓度,空化数和降解可以显着影响气泡引发和发育。在聚合物溶液的情况下推迟了泡起始,并且在较高浓度下这种效果更显着。此外,在相同的条件下,与水相比,聚合物溶液中的气泡的群体显着降低,特别是在较高浓度下。随着降低的空化数而降低了这种效果。而且,与自来水相比,新鲜聚合物溶液具有较低的临界空化数。除了新鲜的聚合物溶液外,还在目前的研究中研究了降解的效果。结果表明,与新鲜溶液相比,较少发生泡沫启动,泡沫的群体显着增加。

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