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首页> 外文期刊>AIP Advances >Enhancing the aggressive intensity of hydrodynamic cavitation through a Venturi tube by increasing the pressure in the region where the bubbles collapse
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Enhancing the aggressive intensity of hydrodynamic cavitation through a Venturi tube by increasing the pressure in the region where the bubbles collapse

机译:通过增加气泡破裂区域的压力来增强通过文丘里管的水动力空化的激进强度

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In this paper, we used a Venturi tube for generating hydrodynamiccavitation, and in order to obtain the optimum conditions for this to be used in chemical processes, the relationship between the aggressive intensity of the cavitation and the downstream pressure where the cavitationbubbles collapse was investigated. The acoustic power and the luminescence induced by the bubbles collapsing were investigated under various cavitating conditions, and the relationships between these and the cavitation number, which depends on the upstream pressure, the downstream pressure at the throat of the tube and the vapor pressure of the test water, was found. It was shown that the optimum downstream pressure, i.e., the pressure in the region where the bubbles collapse, increased the aggressive intensity by a factor of about 100 compared to atmospheric pressure without the need to increase the input power. Although the optimum downstream pressure varied with the upstream pressure, the cavitation number giving the optimum conditions was constant for all upstream pressures.
机译:在本文中,我们使用文丘里管产生水动力空化,并且为了获得用于化学过程的最佳条件,研究了空化的侵蚀强度与空化气泡塌陷的下游压力之间的关系。研究了在各种空化条件下由气泡坍塌引起的声功率和发光,并且这些与空化数之间的关系取决于上游压力,管喉处的下游压力和管道的蒸汽压。测试水被发现。结果表明,与大气压相比,最佳的下游压力,即气泡破裂的区域中的压力,将激进强度提高了约100倍,而无需增加输入功率。尽管最佳下游压力随上游压力而变化,但给出最佳条件的空化次数对于所有上游压力都是恒定的。

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