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Geometrical Optimization of a Venturi-Type Microbubble Generator Using CFD Simulation and Experimental Measurements

机译:使用CFD仿真和实验测量的文丘里型微泡发生器的几何优化

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Microbubble generators are of considerable importance to a range of scientific fields from use in aquaculture and engineering to medical applications. This is due to the fact the amount of sea life in the water is proportional to the amount of oxygen in it. In this paper, experimental measurements and computational Fluid Dynamics (CFD) simulation are performed for three water flow rates and three with three different air flow rates. The experimental data presented in the paper are used to validate the CFD model. Then, the CFD model is used to study the effect of diverging angle and throat length/throat diameter ratio on the size of the microbubble produced by the Venturi-type microbubble generator. The experimental results showed that increasing water flow rate and reducing the air flow rate produces smaller microbubbles. The prediction from the CFD results indicated that throat length/throat diameter ratio and diffuser divergent angle have a small effect on bubble diameter distribution and average bubble diameter for the range of the throat water velocities used in this study.
机译:微胶布发电机对一系列科学领域具有重要意义,从水产养殖和工程到医疗应用。这是由于水中的海洋生物量与其中的氧气量成正比。在本文中,对三种水流速率和三种不同空气流速进行三个水流来执行实验测量和计算流体动力学(CFD)模拟。本文呈现的实验数据用于验证CFD模型。然后,CFD模型用于研究发散角和喉部长度/喉部直径比对由文丘里型微泡发生器产生的微泡的尺寸的影响。实验结果表明,增加的水流量和减小空气流量产生较小的微泡。来自CFD结果的预测表明,喉部长度/喉部直径比和扩散器发散角对气泡直径分布和平均气泡直径的效果小,用于该研究中使用的喉部水速度的范围。

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