Numerical solution of EMHD GO-MoS₂/H₂O flow and heat transportation toward stretching/ shrinking riga plate with joule heating and convective boundary condition

Aminuddin, Nur Aisyah and Zainuddin, Nooraini and Mohd Nasir, Nor Ain Azeany and Samsuri, Alinda and Ishak, Anuar (2023) Numerical solution of EMHD GO-MoS₂/H₂O flow and heat transportation toward stretching/ shrinking riga plate with joule heating and convective boundary condition. In: Simposium Kebangsaan Sains Matematik ke-30 (SKSM 30), 26 -27 September 2023, Hotel Raia, Alor Setar, Kedah. (Submitted)

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Abstract

This research includes a convective boundary condition and joule heating in a numerical study of the EMHD stagnation point flow of a GO-MoS₂/water hybrid nanotluid across a contracting sheet. The governing partial differential equations are transformed using a similarity criterion into non-linear ordinary differential equations of third and second order. 'I'he bvp4c solver is then used to perform the numerical solution of these equations. Graphs and discussions of the computational results for the skin friction coefficient. local Nusselt number, velocity. and temperature profiles for a range of physical parameter values are provided. Dual solutions provide intriguing behaviour for specific governing factors. According to the findings, the magnetic field parameter. Eckert number and the radiation parameter all have a role in determining the velocity and the temperature. Significant changes occur in the local Nusselt number and skin friction coefTicient when suction is present. It is noted that the performance of skin friction is enhanced with the Hartmann number and suction parameter, while the radiation and Biot numbers can improve the heat transfer rate.

Item Type: Conference or Workshop Item (Paper)
Uncontrolled Keywords: GO-MoS₂/water hybrid, hybrid nanofluids,mathematical modelling, stretching, shrinking
Subjects: Q Science > Q Science (General)
Q Science > QA Mathematics
Q Science > QD Chemistry
Q Science > QH Natural history > QH301 Biology
T Technology > T Technology (General)
Divisions: Centre For Defence Foundation Studies
Depositing User: Mr Shahrim Daud
Date Deposited: 08 Mar 2024 08:36
Last Modified: 08 Mar 2024 08:36
URI: http://ir.upnm.edu.my/id/eprint/396

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