Dr sayyed aboozar Fanaee
Dr sayyed aboozar Fanaee
Associate Professor in Mechanical Engineering, University of Birjand
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Cited by
Cited by
Two-dimensional analytical model of flame characteristic in catalytic micro-combustors for a hydrogen–air mixture
SA Fanaee, JA Esfahani
International Journal of Hydrogen Energy 39 (9), 4600-4610, 2014
Analytical two-dimensional modeling of hydrogen–air mixture in catalytic micro-combustor
SA Fanaee, JA Esfahani
Meccanica 50 (6), 1481-1494, 2015
The analytical modeling of finite-length homogonous micro-combustor for a hydrogen-oxygen mixture with wall temperature effects
SA Fanaee
Journal of Mechanics 32 (5), 631-642, 2016
Investigation over the recirculation influence on the combustion of micro organic dust particles
M Bidabadi, A Fanaee, A Rahbari
Applied Mathematics and Mechanics 31, 685-696, 2010
Effect of hydrogen addition on conjugate heat transfer in a planar micro-combustor with the detailed reaction mechanism: an analytical approach
M Pourali, JA Esfahani, SA Fanaee, RJM Bastiaans, KC Kim
international journal of hydrogen energy 45 (30), 15425-15440, 2020
Two-dimensional analytical investigation of conjugate heat transfer in a finite-length planar micro-combustor for a hydrogen-air mixture
M Pourali, JA Esfahani, SA Fanaee
International Journal of Hydrogen Energy 44 (23), 12176-12187, 2019
The unsteady investigation of methane-air premixed counterflow flame into newly proposed plus-shaped channel over palladium catalyst
A Edalati-Nejad, SA Fanaee, J Khadem
Energy 186, 115833, 2019
Analytical Modeling of Hydrogen–Air Mixture in a Catalytic Microchannel
JA Esfahani, SA Fanaee
Journal of Thermophysics and Heat Transfer 29 (2), 274-280, 2015
Self-similar nonasymptotic solution of multireaction stationary flow in catalytic microcombustor
SA Fanaee
Journal of Thermophysics and Heat Transfer 32 (3), 560-569, 2018
The normalized analysis of a surface heterogeneous reaction of a propane/air mixture into a micro-channel
A Fanaee, JA Esfahani
Chinese Physics Letters 29 (12), 124702, 2012
The investigation of semi-three-dimensional heat transfer modeling in microcombustors
A Fanaee, JA Esfahani
Journal of Thermal Science and Engineering Applications 3 (1), 2011
The analytical modeling of propane-oxygen mixture at catalytic micro-channel
SA Fanaee, JA Esfahani
Heat and Mass Transfer 50, 1365-1373, 2014
The modeling of constant/variable solar heat flux into a porous coil with concentrator
SA Fanaee, M Rezapour
Journal of Solar Energy Engineering 142 (1), 2020
The influence of radiation on the flame propagation through micro organic dust particles with non-unity Lewis number
M Bidabadi, S Montazerinejad, SA Fanaee
Journal of the Energy Institute 87 (4), 354-366, 2014
An analytical study of radiation effect on the ignition of magnesium particles using perturbation theory
M Bidabadi, S Montazerinejad, SA Fanaee
Latin American applied research 40 (4), 351-357, 2010
MHD Mixed Convective Flow Past a Vertical Plate Embedded in a Porous Medium with Radiation Effects and Convective Boundary Condition Considering Chemical Reaction
S Zafariyan, SA Fanaee
çankaya University Journal of Science and Engineering 10 (1), 2013
The time dependent investigation of methane-air counterflow diffusion flames with detailed kinetic and pollutant effects into a micro/macro open channel
A Edalati-nejad, SA Fanaee, M Ghodrat, F Salehi, J Khadem
Case Studies in Thermal Engineering 18, 100603, 2020
The investigation of thermal and solutal secondary effects on MHD convective transfer past a vertical surface in a porous medium
S Zafariyan, A Fanaee, A Mohammadzadeh
Arabian Journal for Science and Engineering 38, 3211-3220, 2013
Novel design for tri-generation cycle with Parabolic Trough Collector: An exergy-economic analysis
SA Fanaee, R Kheiri, A Edalati-nejad, M Ghodrat
Thermal Science and Engineering Progress 24, 100871, 2021
Developing mathematical modeling of the heat and mass transfer in a planar micro-combustor with detailed reaction mechanisms
M Pourali, J Abolfazli Esfahani, SA Fanaee, KC Kim
Journal of Thermal Analysis and Calorimetry 143, 2679-2694, 2021
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