Abstract
Laminar mixed convection flow over a 2D horizontal microscale backward-facing step (MBFS) placed in a duct is numerically investigated. The governing equations along with the boundary conditions are solved using the finite volume method (FVM). The upstream wall and the step wall are considered adiabatic, while the downstream wall is heated by uniform heat flux. The straight wall of the duct is maintained at a constant temperature that is higher than the inlet fluid temperature. Different types of nanoparticles such as Al 2O 3, CuO, SiO 2 and ZnO, with volume fractions in the range of 1-4% are used. The nanoparticles diameter was in the range of 25 nm ≤ d p ≤ 70 nm. The expansion ratio was 2 and the step height was 0.96 μm. The Reynolds number was in the range of 0.05 ≤ Re ≤ 0.5. The results revealed that the Nusselt number increases with increasing the volume fraction and Reynolds number. The nanofluid of SiO 2 nanoparticles is observed to have the highest Nusselt number value. It is also found that the Nusselt number increases with the decrease of nanoparticle diameter. However, there is no recirculation region was observed at the step and along the duct.
Original language | English |
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Pages (from-to) | 5870-5881 |
Number of pages | 12 |
Journal | International Journal of Heat and Mass Transfer |
Volume | 55 |
Issue number | 21-22 |
DOIs | |
State | Published - Oct 2012 |
Externally published | Yes |
Keywords
- Heat transfer enhancement
- Microscale backward-facing step
- Mixed convection
- Nanofluids
ASJC Scopus subject areas
- Condensed Matter Physics
- Mechanical Engineering
- Fluid Flow and Transfer Processes