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气泡上升过程中尾流演变的VOF数值模拟 被引量:10

Numerical simulation about evolution of bubble wake during bubble rising by VOF method
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摘要 利用VOF (volume of fluid)方法对静止水中气泡的自由上升过程进行了数值模拟,研究了初始直径不同的气泡自由上升时尾流的演变过程。研究发现气泡自由上升过程中其尾流有对称脱落、过渡态和周期性脱落三种运动状态,其中过渡态是介于对称脱落和周期性脱落之间的非稳定性脱落。气泡上升过程中其形状由球形转变为椭球形。尾流的对称脱落发生在气泡处于椭球形状且沿直线上升的过程;随着气泡的继续上升,当气泡的长轴与水平方向产生夹角时,尾流就会由对称脱落转变为过渡态(非稳定性脱落);最终,尾流会转变为周期性脱落。2.4~3.7 mm气泡尾流运动状态发生转变的临界Reynolds数不同,且随气泡初始直径的增大而增加。直径为2.4~3.7 mm气泡的尾流周期性脱落的频率为31~39 Hz,且频率随气泡直径的增大而减小。 The VOF(volume of fluid)method was used to numerically simulate the free-rising process of bubble in still water,and the evolution of bubble wake with different initial diameters was studied.The results show that there are three motion states of bubble wake:symmetrical shedding,unstable shedding and periodic shedding during the bubble freely rising,and the unstable shedding is transitional state between symmetrical shedding and periodic shedding.The shape of bubble changes from spherical to ellipsoidal as it rises.The symmetric shedding of bubble wake occurs when the bubble is in the ellipsoidal shape state and rises straightly.As the bubble continues to rise,when the long axis of the bubble and the horizontal direction form an angle,the wake will change from symmetrical shedding to a transition state(unsteady shedding).Eventually,the bubble wake changes a motion state of periodic shedding.The critical Reynolds number of transition of the wake motion state of bubble with an initial diameter of2.4-3.7 mm is difference and increases with the increase of the bubble initial diameter.The frequency of periodic shedding of the bubble wake with an initial diameter of 2.4-3.7 mm is 31-39 Hz,and the frequency decreases with the increase of the initial diameter of bubble.
作者 顾英杰 杨伟栋 刘志远 罗志国 邹宗树 GU Yingjie;YANG Weidong;LIU Zhiyuan;LUO Zhiguo;ZOU Zongshu(School of Metallurgy,Northeast University,Shenyang 110819,Liaoning,China;Key Laboratory of Ecological Metallurgy Multimetallic Mineral(Ministry of Education),School of Metallurgy,Northeast University,Shenyang 110819,Liaoning,China)
出处 《化工学报》 EI CAS CSCD 北大核心 2021年第4期1947-1955,共9页 CIESC Journal
关键词 数值模拟 VOF方法 气泡 尾流 脱落频率 numerical simulation VOF method bubble wake frequency of shedding
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  • 1李文春,金晗辉,任安禄,樊建人,岑可法.气固两相三维圆柱绕流的直接数值模拟[J].工程热物理学报,2006,27(5):808-810. 被引量:8
  • 2Grace J R. Shapes and Velocities of Bubbles Rising in Infinite Liquids. Trans. Inst. Chem. Eng., 1973, 51:116
  • 3Grace J R, Wairegi T, Nguyen T H. Shapes and Velocities of Single Drops and Bubbles Moving Freely Through Immiscible Liquids. Trans. Inst. Chem. Eng., 1976, 54: 167
  • 4Ryskin G, Leal L G. Numerical Solution of Free-Boundary Problems in Fluid Mechanics, Part Ⅱ., Buoyancy-driven Motion of a Gas Bubble Through a Quiescent Liquid. Journal of Fluid Mechanics, 1984, 148:19
  • 5Takagi S, Matsumoto Y, Huang H. Numerical Analysis of a Single Rising Bubble Using Boundary-Fitted Coordinate System. Trans. Jpn. Soc. Mech. Eng. B, 1995, 61:1976
  • 6Clift R, Crace J R, Weber ME. Bubbles, Drops and Partides. Academic, 1978
  • 7Ryskin G, Leal L G. Numerical Solution of Free-Boundary Problems in Fluid Mechanics, Part Ⅰ., The Finite- Difference Technique. Journal of Fluid Mechanics, 1984, 148:1
  • 8Tomiyama A, Zun I, Sou A, et al. Numerical Analysis of Bubble Motion with the VOF Method. Nuclear Engineering Design, 1993, 141:69
  • 9Francois M, Shyy W. Computations of Drop Dynamics with the Immersed Boundary Method, Part i: Numerical Algorithm and Buoyancy-Induced Effect. Numerical Heat Transfer, Part B, 2003, 44:101-118
  • 10Ni M-J, Komori S, Morley N B. Dynamics of Falling Droplet in a Channel with Wall Effect. Int. J. Heat Mass Transfer, 2006, 49:366

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