[1] 梁刚涛. 液滴撞击液膜的动力学特性研究[D]. 大连:大连理工大学, 2014.
[2] Pan?o M R O, Moreira A L N. Flow Characteristics of Spray Impingement in PFI Injection Systems[J]. Experiments in Fluids, 2005, 39(2): 364-374.
[3] Horacek B, Kiger K T, Kim J. Single Nozzle Spray Cooling Heat Transfer Mechanisms[J]. International Journal of Heat and Mass Transfer, 2005, 48(8): 1425-1438.
[4] 钱 磊. 叶轮式通风器不同参数对其性能影响研究[D]. 哈尔滨:哈尔滨工程大学, 2018.
[5] 张小彬. 动压式油气分离器性能的实验与理论研究[D]. 哈尔滨:哈尔滨工程大学, 2018.
[6] Liang H, Guo D. The Film Forming Behavior at High Speeds Under Oil-Air Lubrication[J]. Tribology International, 2015, 91(7): 6-13.
[7] Thoroddsen S T. The Ejecta Sheet Generated by the Impact of a Drop[J]. J. Fluid Mech, 2002, 451(1): 373-381.
[8] Wal R L V, Berger G M, Mozes S D. Droplets Splashing upon Films of the Same Fluid of Various Depths[J]. Experiments in Fluids, 2006, 40(1): 33-52.
[9] ? ?ikalo , Tropea C, Gani? E N. Dynamic Wetting Angle of a Spreading Droplet[J]. Experimental Thermal and Fluids Science, 2005, 29(7): 795-802.
[10] 黄 虎, 洪 宁, 梁 宏, 等. 液滴撞击液膜过程的格子Boltzmann方法模拟[J]. 物理学报, 2016, 65(8): 1-12.
[11] Riber M, Frohn A. A Numerical Study on the Mechanism of Splashing[J]. International Journal of Heat and Fluid Flow, 1999, 20(5): 455-461.
[12] Nikolopoulos N, Theodorakakos A, Bergeles G. Three-Dimensional Numerical Investigation of a Droplet Impinging Normally onto a Wall Film[J]. Journal of Computational Physics, 2007, 225(1): 322-341.
[13] Gao X, Li R. Impact of a Single Drop on a Flowing Liquid Film[J]. Physical Review E, 2015, 92(5).
[14] Burzynski D A, Bansmer S E. Droplet Splashing on Thin Moving Films at High Weber Numbers[J]. International Journal of Multiphase Flow, 2018, 101(4): 202-211.
[15] Cheng M, Jing L. Lattice Boltzmann Simulation of a Drop Impact on a Moving Wall with a Liquid Film[J]. Computers and Mathematics with Application, 2014, 67(2): 307-317.
[16] Liu C, Shen M, Wu J. Investigation of a Single Droplet Impact onto a Liquid Film with Given Horizontal Velocity[J]. European Journal of Mechanics/B Fluids, 2018, 67(9): 269-279.
[17] Gueyffier D, Li J, Nadim A, et al. Volume of Fluid Interface Tracking with Smoothed Surface Stress Methods for Three-Dimensional Flows[J]. Journal of Computational Physics, 1999, 152(2): 423-456.
[18] Sussman M, Smereka P, Osher S. A Level Set Approach for Computing Solutions to Incompressible Two-Phase Flow[J]. Journal of Computational Physics, 1994, 114(1): 146-159.
[19] Son G. Efficient Implementation of a Coupled Level-Set and Volume-of-Fluid Method for Three-Dimensional Incompressible Two-Phase Flows[J]. Numerical Heat Transfer, 2003, 43(6): 549-565.
[20] 宋云超. 气液两相流动相界面追踪方法及液滴撞击壁面运动机制的研究[D]. 北京:北京交通大学, 2012.
[21] Cossali G E, Marengo M, Coghe A, et al. The Role of Time in Single Drop Splash on Thin Film[J]. Experiments in Fluids, 2004, 36(6): 888-900.
[22] Mukherjee S, Abraham J. Crown Behavior in Drop Impact on Wet Walls[J]. Physics of Fluids, 2007, 19(5).
[23] Krechetnikov R, Homsy G M. Crown Forming Instability Phenomena in the Drop Splash Problem[J]. Journal of Colloid and Interface Science, 2009, 331(2): 555-559.
[24] Kharmiani S F, Fard M P, Niazmand H. Simulation of a Single Droplet Impact onto a Thin Liquid Film Using the Lattice Boltzmann Method[J]. Journal of Molecular Liquids, 2016, 222(7): 1172-1182.
[25] Lee S H, Hur N, Kang S. A Numerical Analysis of Drop Impact on Liquid Film by Using a Level Set Method[J]. Journal of Mechanical Science and Technology, 2011, 25(10): 2567-2572.