Experimental analysis of Lagrangian paths of drops generated by liquid/liquid sprays
Author:
Funder
ANR
COST
Publisher
Springer Science and Business Media LLC
Subject
Fluid Flow and Transfer Processes,General Physics and Astronomy,Mechanics of Materials,Computational Mechanics
Link
https://link.springer.com/content/pdf/10.1007/s00348-022-03496-5.pdf
Reference39 articles.
1. Abu-Gharbieh R, Persson JL, Försth M, Rosen A, Karlström A, Gustavsson T (2000) Compensation method for attenuated planar laser images of optically dense sprays. Appl Opt 39(8):1260–1267
2. Akhmetbekov YK, Alekseenko SV, Dulin VM, Markovich DM, Pervunin KS (2010) Planar fluorescence for round bubble imaging and its application for the study of an axisymmetric two-phase jet. Exp Fluids 48(4):615–629
3. Asgarian A, Yang Z, Tang Z, Bussmann M, Chattopadhyay K (2020) An image feature consolidation technique (IFCT) to capture multi-range droplet size distributions in atomizing liquid sheets. Exp Fluids 61(1):1–22
4. Blaisot J, Yon J (2005) Droplet size and morphology characterization for dense sprays by image processing: application to the diesel spray. Exp Fluids 39(6):977–994
5. Bordás R, Roloff C, Thévenin D, Shaw R (2013) Experimental determination of droplet collision rates in turbulence. New J Phys 15(4):045010
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2. Mass log-stable distribution of fragments in liquid–liquid jet fragmentation based on a two-step cascade between viscous shear instability and Rayleigh–Taylor instability;International Journal of Multiphase Flow;2023-10
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