[HTML][HTML] Thermal analysis of moving porous fin wetted by hybrid nanofluid with trapezoidal, concave parabolic and convex cross sections

S Hosseinzadeh, K Hosseinzadeh, A Hasibi… - Case Studies in Thermal …, 2022 - Elsevier
In this study, the thermal performance of moving porous fin wetted with hybrid nanofluid with
different cross-sections in the presence of a magnetic field is investigated. As an innovation …

Entropy generation in thermal systems with solid structures–a concise review

M Torabi, K Zhang, N Karimi, GP Peterson - International Journal of Heat …, 2016 - Elsevier
Abstract Analysis of thermal systems on the basis of the second law of thermodynamics has
recently gained considerable attention. This is, in part, due to the fact that this approach …

Flow and heat transfer enhancement in tube heat exchangers

SAE Sayed Ahmed, OM Mesalhy, MA Abdelatief - Heat and Mass Transfer, 2015 - Springer
The performance of heat exchangers can be improved to perform a certain heat-transfer duty
by heat transfer enhancement techniques. Enhancement techniques can be divided into two …

Thermal and flow analysis of microchannel heat sink (MCHS) cooled by Cu–water nanofluid using porous media approach and least square method

M Hatami, DD Ganji - Energy Conversion and management, 2014 - Elsevier
In this study, heat transfer of a fin shaped microchannel heat sink (MCHS) cooled by Cu–
water nanofluid is investigated and temperature distribution in solid section (fin) and fluid …

Statistical optimization of microchannel heat sink (MCHS) geometry cooled by different nanofluids using RSM analysis

M Rahimi-Gorji, O Pourmehran, M Hatami… - The European Physical …, 2015 - Springer
In this work, an analytical investigation of the heat transfer for the microchannel heat sink
(MCHS) cooled by different nanofluids (Cu, Al 2 O 3, Ag, TiO 2 in water and ethylene glycol …

Thermal performance of circular convective–radiative porous fins with different section shapes and materials

M Hatami, DD Ganji - Energy Conversion and Management, 2013 - Elsevier
In this study, heat transfer and temperature distribution equations for circular convective–
radiative porous fins are presented. It's assumed that the thickness of circular fins varies with …

A new fractal model of the convective-radiative fins with temperature-dependent thermal conductivity

KJ Wang, F Shi - Thermal science, 2023 - doiserbia.nb.rs
In this paper, the convective-radiative fins of rectangular profile with temperature-dependent
thermal conductivity are considered. By studying the conventional heat transfer equation, its …

Investigation of refrigeration efficiency for fully wet circular porous fins with variable sections by combined heat and mass transfer analysis

M Hatami, DD Ganji - International journal of refrigeration, 2014 - Elsevier
Temperature distribution equation and refrigeration efficiency for fully wet circular porous
fins with variable sections are introduced in this study by a new modified wet fin parameter …

Thermal behavior of longitudinal convective–radiative porous fins with different section shapes and ceramic materials (SiC and Si3N4)

M Hatami, DD Ganji - Ceramics International, 2014 - Elsevier
In this study, heat transfer and temperature distribution equations for longitudinal convective–
radiative porous fins are presented. It is assumed that the thickness of fins varies with length …

Refrigeration efficiency analysis for fully wet semi-spherical porous fins

M Hatami, GHRM Ahangar, DD Ganji… - Energy conversion and …, 2014 - Elsevier
In this study, temperature distribution equation for a fully wet semi-spherical porous fin is
presented by a new modified fin parameter introduced by Sharqawy and Zubair which can …