Three-dimensional analysis of entropy generation for forced convection over an inclined step with presence of solid nanoparticles and magnetic force

M Atashafrooz, H Sajjadi, A Amiri Delouei… - … Heat Transfer, Part A …, 2021 - Taylor & Francis
In this work, the interaction impacts of solid nanoparticles and magnetic force on the entropy
generation rates for three-dimensional forced convection over an inclined step in the …

Three dimensional non-linear radiative nanofluid flow over a Riga plate

AK Abdul Hakeem, P Ragupathi, S Saranya… - Journal of Applied and …, 2020 - jacm.scu.ac.ir
Numerous techniques in designing zones happen at high temperature and functions under
high temperature are in a way that involves non-linear radiation. In weakly conducting fluids …

Interacting influences of Lorentz force and bleeding on the hydrothermal behaviors of nanofluid flow in a trapezoidal recess with the second law of thermodynamics …

M Atashafrooz, H Sajjadi, AA Delouei - International Communications in …, 2020 - Elsevier
This study deals with the analysis of the interacting influences of Lorentz force and bleeding
on the hydrothermal behaviors of magnetohydrodynamic (MHD) nanofluid flow and entropy …

Interaction effects of an inclined magnetic field and nanofluid on forced convection heat transfer and flow irreversibility in a duct with an abrupt contraction

M Atashafrooz, M Sheikholeslami, H Sajjadi… - Journal of Magnetism …, 2019 - Elsevier
This research examines the interaction effects of an inclined magnetic field and nanofluid on
forced convection heat transfer and flow irreversibility in a duct with an abrupt contraction …

Influence of radiative heat transfer on the thermal characteristics of nanofluid flow over an inclined step in the presence of an axial magnetic field

M Atashafrooz - Journal of Thermal Analysis and Calorimetry, 2020 - Springer
This research analyzes the influences of radiation heat transfer and Brownian movement on
the thermal characteristics of nanofluid flow over an inclined step in the presence of an axial …

The effects of buoyancy force on mixed convection heat transfer of MHD nanofluid flow and entropy generation in an inclined duct with separation considering …

M Atashafrooz - Journal of Thermal Analysis and Calorimetry, 2019 - Springer
In this paper, an attempt is made to study the buoyancy force influences on the MHD mixed
convection nanofluid flow and entropy generation over an inclined step in an inclined duct …

[HTML][HTML] Effects of Ag-water nanofluid on hydrodynamics and thermal behaviors of three-dimensional separated step flow

M Atashafrooz - Alexandria Engineering Journal, 2018 - Elsevier
In this research, three-dimensional simulation of nanofluid flow over an inclined step is
investigated numerically. The considered nanofluid in this study is a mixture composed by …

Evaluation of radiative absorption effect to estimate mean radiant temperature in environments with high water vapor concentration such as in a sauna

H Ishibashi, R Tomabechi, K Nishidate, N Osaka… - Building and …, 2023 - Elsevier
The importance of modeling the radiative absorption in an environment with a high
concentration of water vapor, such as inside a sauna, was studied through numerical …

A modified firefly algorithm to maximize heat dissipation of a rectangular porous fin in heat exchangers exposed to both convective and radiative environment

T Deshamukhya, R Nath, SA Hazarika… - Proceedings of the …, 2019 - journals.sagepub.com
The current study deals with the optimization of significant parameters of aluminium and
copper rectangular porous fins using firefly algorithm with reflective boundary condition. The …

Numerical study on forced convection in the exhaust problem using the spectral line-based weighted sum of gray gases model

M Atashafrooz, T Asadi, WM Yan - International Journal of Heat and Mass …, 2020 - Elsevier
In this work, influences of thermal radiation on forced convection in the Exhaust problem are
effectively simulated by application of the spectral line-based weighted sum of gray gases …