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Mohammad Hatami
Mohammad Hatami
Ferdowsi University of Mashhad, Esfarayen University of Technology (EUT), Associate Editor of FDMP
Verified email at um.ac.ir - Homepage
Title
Cited by
Cited by
Year
Nanofluid flow and heat transfer in a rotating system in the presence of a magnetic field
M Sheikholeslami, M Hatami, DD Ganji
Journal of Molecular liquids 190, 112-120, 2014
3572014
Analytical investigation of MHD nanofluid flow in a semi-porous channel
M Sheikholeslami, M Hatami, DD Ganji
Powder Technology 246, 327-336, 2013
3012013
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 78, 347-358, 2014
2572014
Computer simulation of MHD blood conveying gold nanoparticles as a third grade non-Newtonian nanofluid in a hollow porous vessel
M Hatami, J Hatami, DD Ganji
Computer methods and programs in biomedicine 113 (2), 632-641, 2014
2442014
A review of different heat exchangers designs for increasing the diesel exhaust waste heat recovery
M Hatami, DD Ganji, M Gorji-Bandpy
Renewable and sustainable energy reviews 37, 168-181, 2014
2392014
Photocatalytic performance of aerogels for organic dyes removal from wastewaters: Review study
M Hasanpour, M Hatami
Journal of Molecular Liquids 309, 113094, 2020
2292020
Application of three dimensional porous aerogels as adsorbent for removal of heavy metal ions from water/wastewater: A review study
M Hasanpour, M Hatami
Advances in Colloid and Interface Science 284, 102247, 2020
2272020
Micropolar fluid flow and heat transfer in a permeable channel using analytical method
M Sheikholeslami, M Hatami, DD Ganji
Journal of Molecular Liquids 194, 30-36, 2014
2172014
Heat transfer study through porous fins (Si3N4 and AL) with temperature-dependent heat generation
M Hatami, A Hasanpour, DD Ganji
Energy Conversion and Management 74, 9-16, 2013
2142013
Natural convection of sodium alginate (SA) non-Newtonian nanofluid flow between two vertical flat plates by analytical and numerical methods
M Hatami, DD Ganji
Case Studies in Thermal Engineering 2, 14-22, 2014
2042014
Thermal performance of circular convective–radiative porous fins with different section shapes and materials
M Hatami, DD Ganji
Energy Conversion and Management 76, 185-193, 2013
2042013
Statistical optimization of microchannel heat sink (MCHS) geometry cooled by different nanofluids using RSM analysis
M Rahimi-Gorji, O Pourmehran, M Hatami, DD Ganji
The European Physical Journal Plus 130, 1-21, 2015
2022015
Laminar flow and heat transfer of nanofluid between contracting and rotating disks by least square method
M Hatami, M Sheikholeslami, DD Ganji
Powder technology 253, 769-779, 2014
1942014
Design of microchannel heat sink with wavy channel and its time-efficient optimization with combined RSM and FVM methods
J Zhou, M Hatami, D Song, D Jing
International Journal of Heat and Mass Transfer 103, 715-724, 2016
1852016
Optimization of a circular-wavy cavity filled by nanofluid under the natural convection heat transfer condition
M Hatami, D Song, D Jing
International Journal of Heat and Mass Transfer 98, 758-767, 2016
1822016
Numerical optimization of microchannel heat sink (MCHS) performance cooled by KKL based nanofluids in saturated porous medium
O Pourmehran, M Rahimi-Gorji, M Hatami, SAR Sahebi, G Domairry
Journal of the Taiwan Institute of Chemical Engineers 55, 49-68, 2015
1802015
Thermal analysis of convective fin with temperature-dependent thermal conductivity and heat generation
SE Ghasemi, M Hatami, DD Ganji
Case Studies in Thermal Engineering 4, 1-8, 2014
1792014
Squeezing Cu–water nanofluid flow analysis between parallel plates by DTM-Padé Method
G Domairry, M Hatami
Journal of Molecular Liquids 193, 37-44, 2014
1712014
Analytical study of micropolar fluid flow and heat transfer in a channel with permeable walls
M Fakour, A Vahabzadeh, DD Ganji, M Hatami
Journal of Molecular Liquids 204, 198-204, 2015
1702015
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 40, 140-151, 2014
1692014
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