This study deals numerically with the laminar slip-flow forced convection in a micro annulus with constant wall temperature. The solution takes the effects of viscous dissipation, velocity-slip and temperature-jump conditions at the surface into considerations. A hybrid application of the Laplace tr
Effect of viscous heating on heat transfer performance in microchannel slip flow region
β Scribed by Tiantian Zhang; Li Jia; Lixin Yang; Yogesh Jaluria
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 670 KB
- Volume
- 53
- Category
- Article
- ISSN
- 0017-9310
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β¦ Synopsis
Based on the superposition principle, an analytical solution for steady convective heat transfer in a twodimensional microchannel in the slip flow region is obtained, including the effects of velocity slip and temperature jump at the wall, which are the main characteristics of flow in the slip flow region, and viscous heating effects in the calculations. The cases of constant heat flux boundary conditions and one wall as adiabatic and the other wall at constant heat flux input are studied. The solution method is verified for the cases where micro-scale effects are neglected. The effects of viscous heating on the temperature profiles and on the heat transfer performance are analyzed in detail. It is concluded that the effect of viscous heating, like an internal energy source, heats the fluid along the flow direction and severely distorts the temperature profiles. The effects of key parameters, such as the Brinkman and Knudsen numbers, on the Nusselt number, which expresses the heat transfer performance are investigated.
π SIMILAR VOLUMES
Convective heat transfer in a rectangular microchannel under slip flow and H1 boundary condition is studied. Integral transform method is applied to derive the velocity and temperature distributions and thus the average Nusselt number. It is found that rarefaction has a decreasing effect on heat tra