Numerical and Experimental Studies of Collapsing Cavitation Bubbles for Ballast Water Treatment

C. Kang, T. Tandiono, Xin Lu, C. Turangan, H. Osman, Fannon Lim, M. Lucas, Matthew Tan
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Abstract

In this paper, we report both experimental and computational studies of hydrodynamic cavitation generated by accelerating liquid through a series of constrictions. The detailed process of cavitation generation is visualized using a high-speed photography. The cavitation is initiated when a gas bubble moves towards the constrictions. The gas bubble initially accelerates, expands and then splits into smaller bubbles when it moves along the constriction. As these bubbles migrate into a large liquid compartment, they collapse violently to form a bubble cloud, owing to a sudden jump in liquid pressure in the compartment. The experimental observation is further confirmed using computational fluid dynamics (CFD) simulations. We also present experimental evidence showing a significant reduction in gram-negative Escherichia coli concentration after it passes through the constrictions.
压载水处理空化气泡坍塌的数值与实验研究
在本文中,我们报告了由一系列收缩加速液体产生的流体动力空化的实验和计算研究。利用高速摄影技术可视化了空化产生的详细过程。当气泡向收缩处移动时,就会产生空化现象。气泡最初加速,膨胀,然后在收缩过程中分裂成更小的气泡。当这些气泡迁移到一个大的液体隔间时,由于隔间内液体压力的突然上升,它们猛烈地坍缩形成气泡云。计算流体力学(CFD)模拟进一步证实了实验结果。我们还提出了实验证据,表明革兰氏阴性大肠杆菌通过收缩后浓度显著降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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