FreeFEM++ based heat transfer analysis of an electrically induced magnetic flow within the framework of micropolar continuum
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[1] I. Mudawar,et al. Heat transfer and interfacial flow physics of microgravity flow boiling in single-side-heated rectangular channel with subcooled inlet conditions – Experiments onboard the International Space Station , 2023, International Journal of Heat and Mass Transfer.
[2] P. Dey,et al. A critical review on recent developments and applications of microchannels in the field of heat transfer and energy , 2023, Heat and Mass Transfer.
[3] D. Mikielewicz,et al. Three-dimensional numerical investigation of hybrid nanofluids in chain microchannel under electrohydrodynamic actuator , 2022, Numerical Heat Transfer, Part A: Applications.
[4] Linjie Xu,et al. Effects of Reynolds Number on the Overall Characteristics of Flow and Heat Transfer in the Long Micro-Tube with Dimples , 2022, Processes.
[5] E. Fatunmbi,et al. Analysis of hydromagnetic micropolar nanofluid flow past a nonlinear stretchable sheet and entropy generation with Navier slips , 2022, International Journal of Modelling and Simulation.
[6] M. Shamshuddin,et al. Finite element numerical technique for magneto-micropolar nanofluid flow filled with chemically reactive casson fluid between parallel plates subjected to rotatory system with electrical and Hall currents , 2022, International Journal of Modelling and Simulation.
[7] Andreas Menzel,et al. A finite element implementation of the stress gradient theory , 2021, Meccanica.
[8] E. Karvelas,et al. Effect of Micropolar Fluid Properties on the Blood Flow in a Human Carotid Model , 2020, Fluids.
[9] H. Kaneez,et al. Numerical computation of heat transfer enhancement through Cosserat hybrid nanofluids using continuous Galerkin–Petrov method , 2020 .
[10] Kyriaki-Evangelia Aslani,et al. Micromagnetorotation of MHD Micropolar Flows , 2020, Symmetry.
[11] M. Shamshuddin,et al. Finite element analysis on transient magnetohydrodynamic (MHD) free convective chemically reacting micropolar fluid flow past a vertical porous plate with Hall current and viscous dissipation , 2018, Propulsion and Power Research.
[12] Upendra Bhandarkar,et al. Numerical simulation of two-fluid magnetohydrodynamic channel flows , 2018, Numerical Heat Transfer, Part A: Applications.
[13] T. Asim,et al. Influence of a magnetic field on the flow of a micropolar fluid sandwiched between two Newtonian fluid layers through a porous medium , 2018, The European Physical Journal Plus.
[14] I. Pop,et al. Convective heat transfer of micropolar fluid in a horizontal wavy channel under the local heating , 2017 .
[15] S. Dinarvand,et al. Micropolar fluid flow and heat transfer about a spinning cone with Hall current and Ohmic heating , 2014 .
[16] J. Murthy,et al. Steady flow of micropolar fluid in a rectangular channel under transverse magnetic field with suction , 2011 .
[17] T. Ariman,et al. Microcontinuum fluid mechanics—A review , 1973 .
[18] Jinxin Zhang,et al. Combined influence of rectangular wire coil and twisted tape on flow and heat transfer characteristics in square mini-channels , 2023, International Journal of Heat and Mass Transfer.
[19] A. Borrelli,et al. Magnetoconvection of a micropolar fluid in a vertical channel , 2015 .