## Abstract A solution for the problem of incompressible laminar boundaryβlayer flow and heat transfer with variable viscosity is presented. Because of the variation of viscosity with temperature the velocity and temperature fields interact mutually. This necessitates the simultaneous solution of t
Unsteady boundary layer flow and heat transfer past a porous stretching sheet in presence of variable viscosity and thermal diffusivity
β Scribed by S. Mukhopadhyay
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 379 KB
- Volume
- 52
- Category
- Article
- ISSN
- 0017-9310
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β¦ Synopsis
The aim of this paper is to present the unsteady boundary layer flow and heat transfer of a fluid towards a porous stretching sheet. Fluid viscosity and thermal diffusivity are assumed to vary as linear functions of temperature. Using similarity solutions partial differential equations corresponding to the momentum and energy equations are converted into highly non-linear ordinary differential equations. Numerical solutions of these equations are obtained with the help of shooting method. It is noted that due to increase in unsteadiness parameter, fluid velocity decreases up to the crossing over point and after this point opposite behaviour is noted. The temperature decreases significantly in this case. Fluid velocity decreases with increasing temperature-dependent fluid viscosity parameter (i.e. with decreasing viscosity) up to the crossing over point but increases after that point and the temperature decreases in this case. Due to increase in thermal diffusivity parameter, temperature is found to increase.
π SIMILAR VOLUMES
## Abstract An analysis has been carried out to obtain the thermalβdiffusion and diffusionβthermo effects on the mixed free forced convective and mass transfer in a viscoβelastic fluid flow through a porous medium over a stretching sheet. Here, the driving force for the flow is provided by an imper