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Film Thickness and Velocity Distribution in a Splash-Plate Atomizer: Comparison between Simulations and Experiments

نویسنده:
محمد پسندیده فرد
,
N. Ashgriz
,
J. Mostaghimi
,
D.M. Levesque
,
S. Morrison
,
Mohammad Passandideh-Fard
سال
: 2003
چکیده: A 3D computational model is presented for the simulation of fluid flow and spray in a

splash-plate atomizer. The model combines the solution of continuity and momentum

equations with an algorithm for free surface tracking in presence of an arbitrary nozzle

shape. The model simulates the flow through the nozzle and predicts the formation of a

liquid film and spray droplet size at the nozzle exit. Close agreement between numerical

results and measurements for film thickness and velocity distributions validates the

model and its underlying assumptions. The effect of viscosity on liquid film thickness

and velocity is also investigated; for a liquid with a higher viscosity, the liquid film is

thicker and its velocity is smaller.
یو آر آی: http://libsearch.um.ac.ir:80/fum/handle/fum/3379218
کلیدواژه(گان): Film Thickness,Splash-Plate Atomizer,Simulation,Experiments
کالکشن :
  • ProfDoc
  • نمایش متادیتا پنهان کردن متادیتا
  • آمار بازدید

    Film Thickness and Velocity Distribution in a Splash-Plate Atomizer: Comparison between Simulations and Experiments

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contributor authorمحمد پسندیده فردen
contributor authorN. Ashgrizen
contributor authorJ. Mostaghimien
contributor authorD.M. Levesqueen
contributor authorS. Morrisonen
contributor authorMohammad Passandideh-Fardfa
date accessioned2020-06-06T14:01:25Z
date available2020-06-06T14:01:25Z
date copyright7/1/2003
date issued2003
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3379218?locale-attribute=fa
description abstractA 3D computational model is presented for the simulation of fluid flow and spray in a

splash-plate atomizer. The model combines the solution of continuity and momentum

equations with an algorithm for free surface tracking in presence of an arbitrary nozzle

shape. The model simulates the flow through the nozzle and predicts the formation of a

liquid film and spray droplet size at the nozzle exit. Close agreement between numerical

results and measurements for film thickness and velocity distributions validates the

model and its underlying assumptions. The effect of viscosity on liquid film thickness

and velocity is also investigated; for a liquid with a higher viscosity, the liquid film is

thicker and its velocity is smaller.
en
languageEnglish
titleFilm Thickness and Velocity Distribution in a Splash-Plate Atomizer: Comparison between Simulations and Experimentsen
typeConference Paper
contenttypeExternal Fulltext
subject keywordsFilm Thicknessen
subject keywordsSplash-Plate Atomizeren
subject keywordsSimulationen
subject keywordsExperimentsen
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1021247.html
conference title9th International Conference on Liquid Atomization and Spray Systemsen
conference locationSorrentofa
identifier articleid1021247
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