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Effects of Shear Work on the Non-Equilibrium Heat Transfer Characteristics of Rarefied Micro/Nano Flows

نویسنده:
مجتبی بلاج
,
احسان روحی گل خطمی
,
حسن اخلاقی
,
Mojtaba Balaj
,
Ehsan Roohi
سال
: 2014
چکیده: In the current work, the impact of shear work due to the slip velocity on non-equilibrium heat transfer in a pressure driven micro/nanochannel is

evaluated under constant wall heat flux condition. The DSMC method is employed as our numerical tool. Implementation of the wall heat flux in

the DSMC method is performed using the “modified Iterative technique” which in general eliminates the difficulty of implementation in adiabatic

conditions and improves the convergence speed. We investigate the effects of rarefaction, property variations and compressibility. The numerical

results show that shear stress on the walls significantly affects all aspects of the flow behavior and heat transfer through micro/nano channel such

as the velocity slip and heat flux rates. We also analyze the counter gradient heat flow phenomenon appearing at the cooling conditions. The shear

work always behaves like a heat source (heat flux) due to a considerable heat generation made by the slip velocity at the wall. The latter could be

formulated as us× τxy. It is observed that this heat source affects the heat flux applied to the walls and may overcome the wall heat flux, i.e., in the

case of low cooling heat flux condition, shear work causes the flow field to be heated
یو آر آی: https://libsearch.um.ac.ir:443/fum/handle/fum/3388642
کلیدواژه(گان): DSMC,Rarefied flow
کالکشن :
  • ProfDoc
  • نمایش متادیتا پنهان کردن متادیتا
  • آمار بازدید

    Effects of Shear Work on the Non-Equilibrium Heat Transfer Characteristics of Rarefied Micro/Nano Flows

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contributor authorمجتبی بلاجen
contributor authorاحسان روحی گل خطمیen
contributor authorحسن اخلاقیen
contributor authorMojtaba Balajfa
contributor authorEhsan Roohifa
date accessioned2020-06-06T14:14:54Z
date available2020-06-06T14:14:54Z
date copyright7/13/2014
date issued2014
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3388642
description abstractIn the current work, the impact of shear work due to the slip velocity on non-equilibrium heat transfer in a pressure driven micro/nanochannel is

evaluated under constant wall heat flux condition. The DSMC method is employed as our numerical tool. Implementation of the wall heat flux in

the DSMC method is performed using the “modified Iterative technique” which in general eliminates the difficulty of implementation in adiabatic

conditions and improves the convergence speed. We investigate the effects of rarefaction, property variations and compressibility. The numerical

results show that shear stress on the walls significantly affects all aspects of the flow behavior and heat transfer through micro/nano channel such

as the velocity slip and heat flux rates. We also analyze the counter gradient heat flow phenomenon appearing at the cooling conditions. The shear

work always behaves like a heat source (heat flux) due to a considerable heat generation made by the slip velocity at the wall. The latter could be

formulated as us× τxy. It is observed that this heat source affects the heat flux applied to the walls and may overcome the wall heat flux, i.e., in the

case of low cooling heat flux condition, shear work causes the flow field to be heated
en
languageEnglish
titleEffects of Shear Work on the Non-Equilibrium Heat Transfer Characteristics of Rarefied Micro/Nano Flowsen
typeConference Paper
contenttypeExternal Fulltext
subject keywordsDSMCen
subject keywordsRarefied flowen
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1042413.html
conference title29th International Symposium on Rarefied Gas Dynamicsen
conference locationشیانfa
identifier articleid1042413
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