2008
DOI: 10.1016/j.ijheatmasstransfer.2007.11.009
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Simulation of droplet spreading, splashing and solidification using smoothed particle hydrodynamics method

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Cited by 73 publications
(30 citation statements)
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“…• multi-phase flows [119,[166][167][168][169][170][171][172][173][174], • coastal hydrodynamics including water wave impact, dam break, sloshing and overtopping [112,, • environmental and geophysical flows including flood and river dynamics, landslide, flow in fractures and porous media, seepage, soil mechanics and mudflow [117,, • heat and/or mass conduction [53,[222][223][224][225][226][227], • ice and cohesive grains [228][229][230][231][232][233][234], • microfluidics and/or micro drop dynamics [123,152,169,[235][236][237][238][239][240][241][242][243][244][245][246], • high explosive detonation and explosion [55,125,143,[247][248]…”
Section: Applicationsmentioning
confidence: 99%
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“…• multi-phase flows [119,[166][167][168][169][170][171][172][173][174], • coastal hydrodynamics including water wave impact, dam break, sloshing and overtopping [112,, • environmental and geophysical flows including flood and river dynamics, landslide, flow in fractures and porous media, seepage, soil mechanics and mudflow [117,, • heat and/or mass conduction [53,[222][223][224][225][226][227], • ice and cohesive grains [228][229][230][231][232][233][234], • microfluidics and/or micro drop dynamics [123,152,169,[235][236][237][238][239][240][241][242][243][244][245][246], • high explosive detonation and explosion [55,125,143,[247][248]…”
Section: Applicationsmentioning
confidence: 99%
“…Li et al proposed an SPH model for simulating droplet collision and coalescence [367]. Zhang et al developed an SPH model for free surface and solidification problems, which is also applicable to microfluidics and micro drop dynamics such as droplet spreading, splashing and solidification, substrate melting and deformation [243][244][245]. A revised surface tension model was developed for macro-scale particle methods including SPH by Zhou et al [246].…”
Section: Microfluidics and Micro Drop Dynamicsmentioning
confidence: 99%
“…The molten droplet may rebound, deposit, or splash during impact. Experimental and numerical studies confirmed the Sommerfeld parameter as a critical dimensionless number to quantify the impact behavior of the droplet [2][3][4][5][6][7][8]. According to the experiments, there exists transition temperature.…”
Section: Introductionmentioning
confidence: 96%
“…Multiple droplets impacting on a flat substrate was also simulated. Zhang et al [7] extended the previous work to further improve the SPH model by solving the energy equation together with the solidification model. The new model is capable of simulating the movement of the solidification interface.…”
Section: Introductionmentioning
confidence: 99%
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