Heat transfer enhancement utilizing nanofluids in a two-dimensional enclosure is investigated for various pertinent parameters. The Khanafer's model is used to analyze heat transfer performance of nanofluids inside an enclosure taking into account the solid particle dispersion. Transport equations a
Review of convective heat transfer enhancement with nanofluids
✍ Scribed by Sadik Kakaç; Anchasa Pramuanjaroenkij
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 379 KB
- Volume
- 52
- Category
- Article
- ISSN
- 0017-9310
No coin nor oath required. For personal study only.
✦ Synopsis
Nanofluids are considered to offer important advantages over conventional heat transfer fluids. Over a decade ago, researchers focused on measuring and modeling the effective thermal conductivity and viscosity of nanofluids. Recently important theoretical and experimental research works on convective heat transfer appeared in the open literatures on the enhancement of heat transfer using suspensions of nanometer-sized solid particle materials, metallic or nonmetallic in base heat transfer fluids. The purpose of this review article is to summarize the important published articles on the enhancement of the forced convection heat transfer with nanofluids.
📜 SIMILAR VOLUMES
Forced convective of a nanofluid that consists of water and Al 2 O 3 in horizontal tubes has been studied numerically. Computed results were validated with existing well established correlation. Two-phase Eulerian model has been implemented for the first time to study such a flow field. A single-pha
Heat transfer enhancement utilizing nanofluids in a trapezoidal enclosure is investigated for various pertinent parameters. Transport equations are modelled by a stream-vorticity formulation and solved numerically by finite difference approach. The inclined sloping boundaries is treated by adopting