2024
DOI: 10.32604/fdmp.2023.030325
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Numerical Analysis of the Magnetic Dipole Effect on a Radiative Ferromagnetic Liquid Flowing over a Porous Stretched Sheet

G. Dharmaiah,
F. Mebarek-Oudina,
K. S. Balamurugan
et al.

Abstract: The effects of a magnetic dipole on a nonlinear thermally radiative ferromagnetic liquid flowing over a stretched surface in the presence of Brownian motion and thermophoresis are investigated. By means of a similarity transformation, ordinary differential equations are derived and solved afterwards using a numerical (the BVP4C) method. The impact of various parameters, namely the velocity, temperature, concentration, is presented graphically. It is shown that the nanoparticles properties, in conjunction with … Show more

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Cited by 13 publications
(3 citation statements)
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References 44 publications
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“…The findings of both (Chamkha et al, 2019;Naseem et al, 2023;Dharmaiah et al, 2024) indicate the direct relationship the heat efficiency and porous features have, as augmenting the porous media and Darcy number will boost the Nusselt number and result in great heat exchange.…”
Section: Nomenclaturementioning
confidence: 96%
“…The findings of both (Chamkha et al, 2019;Naseem et al, 2023;Dharmaiah et al, 2024) indicate the direct relationship the heat efficiency and porous features have, as augmenting the porous media and Darcy number will boost the Nusselt number and result in great heat exchange.…”
Section: Nomenclaturementioning
confidence: 96%
“…In open enclosures, the effects FHMT, 2024 of parallel insulated baffles were examined by Palaniappan et al [32]. According to the literature, further activities related to this study are [33][34][35]. Asad et al [36] investigated the analytical modeling of the MHD boundary layer circulation of a chemically reacting upper convective Maxwell fluid via a vertical surface exposed to many stratifications with different characteristics.…”
Section: Introductionmentioning
confidence: 99%
“…Mohanty et al [ 22 ] performed a 2D analysis in an elliptical circular tube-based heat exchanger. Dharmaiah et al [ 23 ] numerically studied a magnetic dipole effect on a radiative ferromagnetic liquid. Li et al [ 24 ] investigated the heat transfer as well as frictional losses in an elliptical tube-based heat exchanger.…”
Section: Introductionmentioning
confidence: 99%