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Researh on Terminal Velocity of Swarm of Bubbles in Seawater

机译:海水中泡沫群末端速度研究

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摘要

Most of industrial plants such petrochemical plant, LNG plant, and power plant, usually use water for the process cooling. Especially, in a large industrial plant, a large amount of seawater is used as the cooling media, and finally discharged to sea area through a seawater discharge basin. The seawater discharge basin has a weir to keep the sufficient backpressure of the seawater cooling system. In the seawater discharge basin, the seawater overflows the weir and falls down into the seawater flow at the downstream of weir. Then, the air is entrained into the seawater at the downstream of weir due to the waterfall flow and air bubbles with various sizes and shapes are generated in seawater. From the viewpoint of an environmental conservation, it is often required to eliminate air bubbles contained in cooling seawater discharged from industrial plants to sea area. There is a de-aeration chamber as a technology to separate these bubbles from the discharged seawater. To perform the optimum design of the de-aeration chamber, it is important to grasp the volume and size distribution of air bubbles generated in the seawater by the waterfall flow at the weir, and a terminal velocity of air bubbles rising in seawater. Therefore, in this study, the terminal velocities of any bubble in swarm of air bubbles rising in stagnant seawater, were measured in the region of low void fraction.
机译:大多数工业厂这些石油化工厂,液化石油厂和发电厂,通常用水用于工艺冷却。特别是,在一个大型工厂,大量的海水被用作冷却介质,最后通过海水排放盆地排放到海域。海水排放盆地具有堰,以保持海水冷却系统的充分背压。在海水排放盆地中,海水溢出了堰,落入了堰下游的海水流动。然后,由于瀑布流量和具有各种尺寸和形状的气泡在海水中产生的瀑布流动和气泡,空气夹带到海水中。从环境保护的角度来看,通常需要消除从工业设备排出的冷却海水中包含的气泡到海域。有一个脱气室作为一种技术,可以将这些气泡与排出的海水分离。为了执行脱气室的最佳设计,重要的是要通过堰的瀑布流动掌握海水中产生的气泡的体积和尺寸分布,以及海水中升起的气泡的终端速度。因此,在本研究中,在低空隙部分的区域中测量在停滞海水中升高的气泡中的任何气泡中的任何泡沫的末端速度。

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