Electrohydro dynamics convection in dielectric rotating Oldroydian nanofluid in porous medium
Keywords:
convection, dielectric, electric field, nanofluid, Oldroydian, porous medium, rotationAbstract
An electrically conducting nanofluid saturated with a uniform porous media has been tested to determine how rotation affects thermal convection. Utilizing the Oldroydian model, which incorporates the specific effects of the electric field, Brownian motion, thermophoresis, and rheological factors for the distribution of nanoparticles that are top- and bottom-heavy, one may use linear stability theory to ensure stability. Analysis and graphical representation of the effects of the AC electric field Rayleigh number, Taylor number, Lewis number, modified diffusivity ratio, concentration Rayleigh number, and medium porosity are provided for both bottom-heavy and top-heavy distribution.
Published
How to Cite
Issue
Section
Copyright (c) 2023 Pushap Lata Sharma, Mohini Kapalta, Ashok Kumar, Deepak Bains, Sumit Gupta, Pankaj Thakur

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- Akindeji Opeyemi Fajana, Adam Muhammed Olawale, Hammed Ajibola Oyesomi, Quantitative reservoir evaluation and hydrocarbon volumetrics :an integrated petrophysical and 3-D static modeling approach in ‘Hamphidex’ field, Niger-Delta, Nigeria , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 2, May 2025
- A. A. Ibiyemi, O. Akinrinola, G. T. Yusuf, S. Olaniyan, J. Lawal, M. Orojo, B. Osuporu, Advance effect of magnetic field on the rheological properties of manganese zinc ferrite ferrofluid , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 2, May 2024
- B. M. Dyavappa, Energy distribution of an ion cloud in a quadrupole Penning Trap , Journal of the Nigerian Society of Physical Sciences: Volume 2, Issue 2, May 2020
- M. Siddalinga Prasad, An exploration of thermal characteristics of a permeable inclined moving inverted exponential fully wet magnetized stretching/shrinking fin , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 4, November 2025
- F. O. Akinpelu, R. A. Oderinu, A. D. Ohaegbue, Analysis of Hydromagnetic Double Exothermic Chemical Reactive Flow with Convective Cooling through a Porous Medium under Bimolecular Kinetics , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- A. B. Disu, S. O. Salawu, Thermal distribution of magneto-tangent hyperbolic flowing fluid over a porous moving sheet: A Lie group analysis , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 1, February 2023
- B. Laxmi, K. Chand, P. Thakur, Hydrodynamic Casson hybrid nanofluid flow across a stretching sheet in the regime of velocity slip and temperature jump,including viscous dissipation, melting, Soret and Dufour effects , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 4, November 2025
- V. Ramanjini, G. Gopi Krishna, Mani Ramanuja, Hari Kamala Sree, S. R. Mishra, Unsteady Prandtl nanofluidic flow through stretching sheet due to mixed convection, first-order slip, and chemical reaction , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 4, November 2023
- Augustine Igwebuike Anya, Uko Ofe, Aftab Khan, Mathematical Modeling of Waves in a Porous Micropolar Fibrereinforced Structure and Liquid Interface , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 3, August 2022
- Pragati, Rajneesh Kumar, Sachin Kaushal, Effect of a moving thermal load in a modified couple stress medium with double porosity and hyperbolic two-temperature theory , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 1, February 2026
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- Jatin Kumar, Khem Chand, Pankaj Thakur, Numerical study of hall current and thermophoresis effect on the hydromagnetic casson nano fluid flow over a stretching surface , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 2, May 2026

