Boundary Layer Flow and Heat Transfer of a Dusty Fluid over an Exponentially Stretching Sheet
نویسندگان
چکیده
منابع مشابه
Three-Dimensional Boundary Layer Flow and Heat Transfer of a Dusty Fluid Towards a Stretching Sheet with Convective Boundary Conditions
The steady three-dimensional boundary layer flow and heat transfer of a dusty fluid towards a stretching sheet with convective boundary conditions is investigated by using similarity solution approach. The free stream along z-direction impinges on the stretching sheet to produce a flow with different velocity components. The governing equations are reduced into ordinary differential equations b...
متن کاملBoundary Layer Flow and Heat Transfer of a Dusty Fluid over a Stretching Sheet
G.Ch.Sarangi Department of Mathematics, D.A.V. Public School,Gosani Nuagaon,, Berhampur, Odisha, India. E mail: [email protected] S.K.Mishra Centre for Fluid Dynamics Research, C.U.T.M., Paralakhemundi, Odisha,India. E-mail:[email protected] Abstract ‐‐ In this paper an attempt has been made to investigate the effect of steady boundary layer flow and heat transfer of two dimensional two ...
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The problem of steady Magnetohydrodynamic boundary layer flow of an electrically conducting nanofluid due to an exponentially permeable stretching sheet with heat source/sink in presence of thermal radiation is numerically investigated. The effect of transverse Brownian motion and thermophoresis on heat transfer and nano particle volume fraction considered. The governing partial differential eq...
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The problem of two-phase MHD boundary layer flow, heat and mass transfer over a stretching sheet with fluid-particle suspension and thermal radiation has been studied. The effect of mass transfer in dusty fluid over a stretching sheet is considered for the first time. The governing equations are reduced to a set of non-linear ordinary differential equations under suitable similarity transforma...
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Laminar boundary layer flow and heat transfer of Newtonian nanofluid over a stretching sheet with the sheet velocity distribution of the form (UW=cXβ) and the wall temperature distribution of the form (TW=T∞+aXr ) for the steady magnetohydrodynamic (MHD) is studied numerically. The governing momentum and energy equations are transformed to the local non-similarity equations using the appropriat...
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ژورنال
عنوان ژورنال: British Journal of Mathematics & Computer Science
سال: 2012
ISSN: 2231-0851
DOI: 10.9734/bjmcs/2012/1250