Simulations of the shock waves and cavitation bubbles during a three-dimensional high-speed droplet impingement based on a two-fluid model
Tài liệu tham khảo
Mitra, S., Breakup process of plane liquid sheets and prediction of initial droplet size and velocity distributions in sprays, PhD thesis, University of Waterloo, 2001.
Blaisot, 2005, Droplet size and morphology characterization for dense sprays by image processing: application to the Diesel spray, Exp Fluids, 39, 977, 10.1007/s00348-005-0026-4
Haller, 2002, Computational study of high-speed liquid droplet impact, J Appl Phys, 92, 2821, 10.1063/1.1495533
McDonald, 2006, Impact of plasma-sprayed metal particles on hot and cold glass surfaces, Thin Solid Films, 514, 212, 10.1016/j.tsf.2006.03.010
Rein, 1993, Phenomena of liquid drop impact on solid and liquid surfaces, Fluid Dyn Res, 12, 61, 10.1016/0169-5983(93)90106-K
Visser, 2012, Microdroplet impact at very high velocity, Soft Matter, 8, 10732, 10.1039/c2sm26323h
Preece, 1979, 1
Rein, 1993, Phenomena of liquid drop impact on solid and liquid surfaces, Fluid Dyn Res, 12, 61, 10.1016/0169-5983(93)90106-K
Lesser, 1983, The impact of compressible liquids, Annu Rev Fluid Mech, 97, 10.1146/annurev.fl.15.010183.000525
Harvie, 2001, A hydrodynamic simulation of droplet impacts on hot surfaces. part I: theoretical model, Int J Heat Mass Transfer, 44, 2633, 10.1016/S0017-9310(00)00303-3
Chizhov, 2000, Impact of a high-velocity drop on an obstacle, Tech Phys, 45, 1529, 10.1134/1.1333189
Deom, 1999, Towards more realistic erosion simulation tests for high velocity DEM and IR windows, Wear, 233, 13, 10.1016/S0043-1648(99)00190-8
Bernardin, 1997, Mapping of impact and heat transfer regimes of water drops impinging on a polished surface, Int J Heat Mass Transf, 40, 247, 10.1016/0017-9310(96)00119-6
Chizhov, 2004, The impact of compressible liquid droplet on hot rigid surface, Int J Heat Mass Transf, 47, 1391, 10.1016/j.ijheatmasstransfer.2003.05.001
Chizhov, 2001, Simulation of impact and bouncing of nitrogen drop out of heated wall, 563
Heymann, 1969, High-Speed Impact between a Liquid Drop and a Solid Surface, J Appl Phys, 40, 5113, 10.1063/1.1657361
Lesser, 1981, Analytic solutions of liquid-drop impact problems, Proc R Soc Lond, A377, 289, 10.1098/rspa.1981.0125
Brunton, 1979, Erosion of solid surfaces by the impact of liquid drops, Vol. 16
Rosenblatt, 1979, Analysis of brittle target fracture from a subsonic water drop impact
Lesser, 1983, The impact of compressible liquids, Ann Rev Fluid Mech, 15, 97, 10.1146/annurev.fl.15.010183.000525
Field, 2012, Cavitation in impacted drops and jets and the effect on erosion damage thresholds, Wear, 290-291, 154, 10.1016/j.wear.2012.03.006
Field, 1989, The effects of target compliance on liquid drop impact, J Appl Phys, 65, 533, 10.1063/1.343136
Kong, 2007, Drop/wall interaction criteria and their applications in diesel spray modeling, Atomization Sprays, 17, 1, 10.1615/AtomizSpr.v17.i6.10
Sanada, 2008, Impact of high-speed steam-droplet spray on solid surface, Fluid Dyn Res, 40, 627, 10.1016/j.fluiddyn.2007.12.014
Sanada, 2011, A Computational Study of High-Speed droplet impact, FDMP, 7, 329
Shu, 1988, Efficient implementation of essentially non-oscillatory shock-capturing schemes, J Comput Phys, 77, 439, 10.1016/0021-9991(88)90177-5
Ishii, 1975
Stewart, 1984, Two-phase flow: models and methods, J Comput Phys, 56, 363, 10.1016/0021-9991(84)90103-7
Chang, 2013, Direct numerical prediction of interfacial instabilities: a consistent, conservative, all-speed, sharp-interface method, J Comput Phys, 242, 946, 10.1016/j.jcp.2013.01.014
Yokoi, 2007, Efficient implementation of THINC scheme: a simple and practical smoothed VOF algorithm, J Comput Phys, 226, 1985, 10.1016/j.jcp.2007.06.020
Stuhmiller, 1997, The influence of interfacial pressure forces on the character of two-phase flow model equations, Int J Multiphase Flow, 3, 551, 10.1016/0301-9322(77)90029-5
Drew, 1979, The analysis of virtual mass effects in two-phase flow, Int J Multiphase Flow, 5, 233, 10.1016/0301-9322(79)90023-5
Saurel, 1999, A multiphase Godunov method for compressible multifluid and multiphase flows, J Comput Phys, 150, 425, 10.1006/jcph.1999.6187
Niu, 2001, Numerical approximations of a compressible two fluid model by the advection upwind splitting method, Int J Num Methods Fluids, 36, 351, 10.1002/fld.138
Liou, 1995, An accurate and robust flux splitting scheme for shock and contact discontinuities, SIAM J Sci Comput, 18, 633
Paillère, 2003, On the extension of the AUSM+ scheme to compressible two-fluid models, Comput Fluids, 32, 891, 10.1016/S0045-7930(02)00021-X
Liou, 1996, A sequel to AUSM: AUSM+, J Comput Phys, 129, 364, 10.1006/jcph.1996.0256
Edwards, 1998, Low-diffusion flux splitting methods for flows at all speeds, AIAA J, 38, 1610, 10.2514/2.587
Chang, 2007, A robust and accurate approach to computing compressible multiphase flow: stratified flow model and AUSM+-up scheme, J Comput Phys, 225, 240, 10.1016/j.jcp.2007.01.007
Niu, 2008, A further work on multi-phase two-fluid approach for compressible multi-phase flows, J Numer Meth Fluids, 58, 879, 10.1002/fld.1773
Knezevic, K.H., Haller, K.K., High-velocity impact of a liquid droplet on a rigid surface: the effect of liquid compressibility, Swiss Federal Institute of Technology Zurich DISS. ETH NO. 14826, Zurich, October 2002.
Van Leer, 1979, Towards the ultimate conservative difference, V: A second order sequel to Godunov's method, J Comput Phys, 32, 179, 10.1016/0021-9991(79)90145-1
Toro, 1999
Ransom, 1987, Numerical benchmark tests, 3
Lu, 1995, Transonic flutter suppression using active acoustic excitations, AIAA J, 33, 694, 10.2514/3.12633
Toumi, 1999, Approximate riemann solvers and flux vector splitting schemes for Two-Phase Flow, VKI LS CFD, 8
Niu, 2016, Computations of two-fluid models based on a simple and robust hybrid primitive variable Riemann solver with AUSMD, J Comput Phys, 308, 389, 10.1016/j.jcp.2015.12.045