EN
Effect of Cuo-Water Nanofluid on the Thermal - Hydraulic Behavior of Triangular Corrugated Channel
Abstract
The aim of this study is to model and simulate laminar flow and heat transfer in a triangular-corrugated duct containing a CuO-water nanofluid. Note that a temperature is imposed on the walls, the considered Reynolds number (Re) and the nanoparticle volume fraction range from 100 to 800 and 0 to 5% respectively. The basic equations were discretized using the finite volume method. Dynamic and thermal fields were obtained, as well as the Nusselt number (Nu). In addition, the influence of certain parameters (Re, nanoparticle volume fraction) was taken into account. It can be observed that the mean Nu increases with increasing Re. Furthermore, raising the nanofluid volume fraction further enhances the heat transfer. For numerical resolution, we used the FLUENT code. Finally, we note that the results are in excellent accord with experimental ones published in the literature.
Keywords
References
- Abed, A. M., Sopian, K., Mohammed, H. A., Alghoul, M. A., Ruslan, M. H., Mat, S., & Al-shamani, A.N. (2015). Enhance heat transfer in the channel with V-shaped wavy lower plate using liquid nanofluids. Case studies in Thermal Engineering, 5, 13-23.
- Ahmed, M. A., Yusoff, M. Z., & Shuaib, N. H. (2012). Numerical investigations on the heat transfer enhancement in a wavy channel using nanofluid. International journal of Heat and Mass Transfer, 55, 5891-5898
- Ahmed, M. A., Yusoff, M. Z., & Shuaib, N. H. (2013b). Effect of geometrical parameters on the flow and heat transfer characteristics in trapezoidal-corrugated channel using nanofluid. International Communications in Heat and Mass Transfer, 42, 69-74.
Details
Primary Language
English
Subjects
Environmental and Sustainable Processes
Journal Section
Conference Paper
Early Pub Date
December 26, 2023
Publication Date
December 30, 2023
Submission Date
July 11, 2023
Acceptance Date
November 29, 2023
Published in Issue
Year 2023 Volume: 26