Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/87599
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Title: Non-monotonic viscous dissipation of bouncing droplets undergoing off-center collision
Authors: He, C 
Xia, X 
Zhang, P 
Issue Date: 2019
Source: Physics of fluids, May 2019, v. 31, no. 5, 052004, p. 052004-1-052004-13
Abstract: The off-center collision of binary bouncing droplets of equal size was studied numerically by a volume-of-fluid method with two marker functions, which has been justified and validated by comparing with available experimental results. A nonmonotonic kinetic energy (KE) recovery with varying impact parameters was discovered. This can be explained by the prolonged entanglement time and the enhanced internal-flow-induced viscous dissipation for bouncing droplets at intermediate impact parameters, compared with those at smaller or larger impact parameters. The distribution of the local viscous dissipation rate (VDR) in the droplet interior shows two major concentration areas, and the competition between these two concentration areas accounts for the nonmonotonic viscous dissipation with varying impact parameters. The nonmonotonic KE recovery with varying impact parameters can also be attributed to the competition between the VDR induced by normal strains and shear strains. The nonmonotonicity was further numerically verified for wider ranges of parameters, and a practically useful formula was proposed to correlate the KE dissipation factor with the impact parameter for various Weber numbers and Ohnesorge numbers.
Publisher: American Institute of Physics
Journal: Physics of fluids 
ISSN: 1070-6631
EISSN: 1089-7666
DOI: 10.1063/1.5088544
Rights: © 2019 Author(s).
This article may be downloaded for personal use only. Any other use requires prior permission of the author and AIP Publishing. This article appeared in C. He, X. Xia and P. Zhang, Phys. Fluids 31, 052004 (2019) and may be found at https://dx.doi.org/10.1063/1.5088544
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