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Numerical and Experimental Studies of an Oil Slick Recovery Method That Uses a Free Surface Vortex

机译:一种使用自由表面涡流的油光滑恢复方法的数值和实验研究

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To study the flow characteristics of water and oil in a free surface vortex with an oil slick on the water surface, the flow phenomenon was simulated using FLUENT software and compared with the experimental phenomenon. The volume of the fluid model was used to obtain the oil–gas–water three-phase eddy current field, yielding the flow structure and evolution process of the free surface vortex. The results reveal that the oil and water distribution follows a specific rule, from the beginning of the vortex at the free surface, through continuous downward extension and finally reaching stability. A few other parameters were also calculated, including the vertical distribution of the vortex core radius, the maximum tangential velocity and the radial velocity at the vortex core radius, and the variation of the velocity components of each phase in the flow field with position and time. The research reveals the oil transportation characteristics of free surface vortices and provides a method for recovering an oil slick using its surface vortex characteristics.
机译:为了在水面上用油幻灯片在自由表面涡流中研究水和油的流动特性,使用流畅的软件模拟流动现象,并与实验现象进行比较。流体模型的体积用于获得油气 - 水三相涡流场,从而产生自由表面涡流的流动结构和进化过程。结果表明,从自由表面的涡流开始,通过连续向下延伸,最终达到稳定性,油和水分布遵循特定规则。还计算了一些其他参数,包括涡旋芯半径的垂直分布,涡旋芯半径的最大切向速度和径向速度,以及在流场中的每个相的速度分量与位置和时间的变化。该研究揭示了自由表面涡流的油运输特性,并提供了一种使用其表面涡流特性回收油粘帘的方法。

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