Thermal Conductivity Models Effect on the Nanofluids Heat Transfer Capability
摘要
AbstractNanofluids are the suspension of solid particles in the fluid. Nanofluid possesses high thermal conductivity and higher surface area to volume ratio which helps in increasing the heat transfer. Thermal properties of nanofluids like, effective density, effective specific heat and effective thermal conductivity are the properties behind the increased heat transfer. Present work focuses on the effect of solid nano-particle concentration and thermal conductivity models on the thermal properties of nanofluids or their heat transfer capability. Al2O3, B4C, Cu, SiC and TiO2 as solid-nano particles while water as base-fluid is considered. Different models considered are mixture rule, “Maxwell model” and Yo and Choi model”. For calculating effective properties, density, specific heat and thermal expansion coefficient, physical mixture rule is considered.Keywords: Nanofluids, nanoparticle, density, thermal conductivity, heatCite this Article Avinash Singh Thakur, Manoj Sharma. Thermal Conductivity Models Effect on the Nanofluids Heat Transfer Capability. Journal of Nanoscience, Nanoengineering and Applications. 2017; 7(2): 35–40p.出版日期
期號
分類
授權條款
Declaration and Copyright Transfer Form
(to be completed by authors)
I/ We, the undersigned author(s) of the submitted manuscript, hereby declare, that the above manuscript which is submitted for publication in the STM Journals(s), is not published already in part or whole (except in the form of abstract) in any journal or magazine for private or public circulation, and, is not under consideration of publication elsewhere.
· I/We will not withdraw the manuscript after 1 week of submission as I have read the Author Guidelines and will adhere to the guidelines.
· I/We Author(s ) have niether given nor will give this manuscript elsewhere for publishing after submitting in STM Journal(s).
· I/ We have read the original version of the manuscript and am/ are responsible for the thought contents embodied in it. The work dealt in the manuscript is my/ our own, and my/ our individual contribution to this work is significant enough to qualify for authorship.
· I/We also agree to the authorship of the article in the following order:
Author’s name
1. ________________
2. ________________
3. ________________
4. _______________
We Author(s) tick this box and would request you to consider it as our signature as we agree to the terms of this Copyright Notice, which will apply to this submission if and when it is published by this journal. |