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Information Journal Paper

Title

Numerical Simulation of Droplet Generation from an Axisymmetric Chamber by Spark Bubble

Pages

  269-278

Abstract

 Due to the increasing applications, micro Droplet generators have become an important research area. Researchers presented different methods to produce controlled microDroplets. In this article, Spark bubble-induced Droplet generation has been studied through an Axisymmetric chamber. The process includes the growth and collapse of the bubble and the formation resultant Droplet until the pinch-off time. Pressure contours and velocity vectors in the fluid surrounding the bubble are obtained by using a combination of boundary element and finite difference method, and the effect strength parameter, chamber depth and inclination angle of feeder canal on the behavior of bubble and Droplet is assessed. The results showed that by increasing the strength parameter, the length of Droplet and its volume increase and Droplet pinch-off happens earlier. By increasing inclination angle of feeder canal the Droplet length and its volume will increase. The maximum pinch-off time belongs to-15 degree. By increasing the chamber depth, the Droplet length will increase. In addition, for-15 degree the pinch-off time increases and the Droplet volume decreases, while for 0 and 15 degrees the pinch-off time will decrease and the Droplet volume will increase. Besides, by increasing bubble-free surface distance the Droplet size decreases.

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    APA: Copy

    Kanan, S., & DADVAND, A.. (2018). Numerical Simulation of Droplet Generation from an Axisymmetric Chamber by Spark Bubble. JOURNAL OF MECHANICAL ENGINEERING, 48(2 (83) ), 269-278. SID. https://sid.ir/paper/269986/en

    Vancouver: Copy

    Kanan S., DADVAND A.. Numerical Simulation of Droplet Generation from an Axisymmetric Chamber by Spark Bubble. JOURNAL OF MECHANICAL ENGINEERING[Internet]. 2018;48(2 (83) ):269-278. Available from: https://sid.ir/paper/269986/en

    IEEE: Copy

    S. Kanan, and A. DADVAND, “Numerical Simulation of Droplet Generation from an Axisymmetric Chamber by Spark Bubble,” JOURNAL OF MECHANICAL ENGINEERING, vol. 48, no. 2 (83) , pp. 269–278, 2018, [Online]. Available: https://sid.ir/paper/269986/en

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