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Large droplet breakup in free fall

ORAL

Abstract

Large droplet break-up occurs in many industrial processes and biological systems but is rarely studied in experiments because of the multiple scales and complexity. Further, the phenomenon is made more complex by examining shear thinning fluids. Here, we seek to unravel this complex phenomenon by looking at very large droplet breakup of both Newtonian and non-Newtonian liquids with droplet sizes greater than 30mm. Our experimental setup consists of a free-falling high-speed camera-light system simultaneously with a proprietary large droplet maker. This allows us to analyze droplets in a gravitationally accelerating flow field. Image analysis techniques are used to analyze the breakup in this controlled environment. The breakup of large Newtonian droplets can vary from vibrational breakup at low speeds to bagging at critical speeds. However, large shear thinning droplets have different Ohnesorge numbers which result in sheared droplets and multimode breakup. We show the various breakup types and compare them to smaller droplet breakup studies.

Publication: 1) Extremely large water droplet impact onto a deep liquid pool, Physical Review Letters, under consideration<br>2) On the Threshold of Drop Fragmentation under Impulsive Acceleration, Journal of Fluid Mechanics, submitted<br>3) Large droplet breakup in free fall, Journal of Fluid Mechanics, to be submitted

Presenters

  • Aqeel Almanashid

    King Abdullah University of Science and Technology

Authors

  • Tadd T Truscott

    King Abdullah University of Science and Technology

  • Aqeel Almanashid

    King Abdullah University of Science and Technology

  • Sandip L Dighe

    King Abdullah University of Science and Technology

  • Spencer S Truman

    King Abdullah University of Science and Technology

  • Dilip K Maity

    King Abdullah University of Science and Technology (KAUST)

  • Nilamani Sahoo

    King Abdullah University of Science and Technology

  • Aditya Parik

    Utah State University

  • Som Dutta

    Utah State University