UPM Institutional Repository

Thermosolutal Marangoni convective flow of MHD tangent hyperbolic hybrid nanofluids with elastic deformation and heat source


Citation

Zhou, Xiangning and Qureshi, Muhammad Amer and Khan, Nargis and Jamshed, Wasim and Mohamed Isa, Siti Suzilliana Putri and Balakrishnan, Nanthini and Syed M. Hussain, . (2024) Thermosolutal Marangoni convective flow of MHD tangent hyperbolic hybrid nanofluids with elastic deformation and heat source. Open Physics, 22 (1). art. no. 20240082. ISSN 2391-5471

Abstract

In this work, the Marangoni convective flow of magnetohydrodynamic tangent hyperbolic (Fe3O4 - Cu /Fe3O4-Cu/ ethylene glycol) hybrid nanofluids over a plate dipped in a permeable material with heat absorption/generation, heat radiation, elastic deformation and viscous dissipation is discussed. The impact of activation energy is also examined. Hybrid nanofluids are regarded as advanced nanofluids due to the thermal characteristics and emerging advantages that support the desire to augment the rate of heat transmission. The generalized Cattaneo-Christov theory, which takes into account the significance of relaxation times, is modified for the phenomena of mass and heat transfer. The fundamental governing partial differential equations are converted to ordinary differential equations (ODEs) by adopting similarity variables. The Runge-Kutta-Fehlberg-45 technique is utilized to solve nonlinear ODEs. Regarding the non-dimensional embedded parameters, a graphic investigation of the thermal field, concentration distribution, and velocity profile is performed. The results show that the increasing Marangoni ratio parameter enhances velocity and concentration distributions while decreases the temperature distribution. The velocity profile is decreased and the efficiency of heat transfer is improved as the porosity parameter is increased. Nusselt number is diminished with the rising values of the porosity variable.


Download File

[img] Text
114620.pdf - Published Version
Available under License Creative Commons Attribution.

Download (7MB)

Additional Metadata

Item Type: Article
Divisions: Institute for Mathematical Research
Centre for Foundation Studies in Science of Universiti Putra Malaysia
DOI Number: https://doi.org/10.1515/phys-2024-0082
Publisher: De Gruyter
Keywords: Activation energy; Cattaneo-christov model; Elastic deformation; Marangoni convection; Tangent hyperbolic hybrid nanofluids
Depositing User: Ms. Nur Faseha Mohd Kadim
Date Deposited: 21 Jan 2025 03:56
Last Modified: 21 Jan 2025 03:56
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1515/phys-2024-0082
URI: http://psasir.upm.edu.my/id/eprint/114620
Statistic Details: View Download Statistic

Actions (login required)

View Item View Item