2011
DOI: 10.1007/s11433-011-4536-1
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Modeling on effervescent atomization: A review

Abstract: The study and modeling process of effervescent atomization are reviewed. The mechanism of droplet events and the treatment of liquid fragmentation process and dispersed particles are systematically presented, which includes the primary atomization of Newtonian and non-Newtonian fluid, instability analysis, turbulence treatment, particle tracking, secondary atomization and droplets collision. The review on the sub-models involved in the simulation of effervescence is followed by a summary of the achievements of… Show more

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Cited by 24 publications
(46 citation statements)
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“…2c. The motion of the liquid at the exit of the injector creates a gas-core surrounded by the liquid film, and due to the pressure difference gases expand and shatter the liquid film into ligaments and fine droplets [32][33][34]40,[42][43][44]. For the ETI, different spray-half-angles of θ = 4°, 6°, and 8°are selected based on various GLRs of 0.095, 0.190 and 0.285, respectively ( Table 2).…”
Section: Model Descriptionmentioning
confidence: 99%
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“…2c. The motion of the liquid at the exit of the injector creates a gas-core surrounded by the liquid film, and due to the pressure difference gases expand and shatter the liquid film into ligaments and fine droplets [32][33][34]40,[42][43][44]. For the ETI, different spray-half-angles of θ = 4°, 6°, and 8°are selected based on various GLRs of 0.095, 0.190 and 0.285, respectively ( Table 2).…”
Section: Model Descriptionmentioning
confidence: 99%
“…The experiments using an effervescent atomizer nozzle by Liu et al [32] and numerical work of Qian and Lin [43] are utilized for the validation of present numerical work. The present model and the numerical and experimental work considered here for validation use the effervescent nozzle spraying the water droplets into the atmosphere.…”
Section: Model Validationmentioning
confidence: 99%
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