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Numerical and sensitivity analysis of MHD bioconvective slip flow of nanomaterial with binary chemical reaction and Newtonian heating

Md. Basir, Md. Faisal and Muhammad Bilal, Muhammad Bilal and Choudhary, Rakesh and Mackolil, Joby and Mahanthesh, B. and Nisar, Kottakkaran S. (2021) Numerical and sensitivity analysis of MHD bioconvective slip flow of nanomaterial with binary chemical reaction and Newtonian heating. Heat Transfer, 50 (6). pp. 5439-5466. ISSN 2688-4534

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Official URL: http://dx.doi.org/10.1002/htj.22132

Abstract

The impact of Stefan blowing on the MHD bioconvective slip flow of a nanofluid towards a sheet is explored using numerical and statistical tools. The governing partial differential equations are nondimensionalized and converted to similarity equations using apposite transformations. These transformed equations are solved using the Runge–Kutta–Fehlberg method with the shooting technique. Graphical visualizations are used to scrutinize the effect of the controlling parameters on the flow profiles, skin friction coefficient, local Nusselt, and Sherwood number. Moreover, the sensitivities of the reduced Sherwood and Nusselt number to the input variables of interest are explored by adopting the response surface methodology. The outcomes of the limiting cases are emphatically in corroboration with the outcomes from preceding research. It is found that the heat transfer rate has a positive sensitivity towards the haphazard motion of the nanoparticles and a negative sensitivity towards the thermomigration. The thermal field is enhanced by the Stefan blowing aspect. Moreover, the fluid velocity can be controlled by the applied magnetic field.

Item Type:Article
Uncontrolled Keywords:Arrhenius activation energy, binary chemical reaction, bioconvection, nanofluid, Newtonian heating, response surface methodology, sensitivity analysis
Subjects:Q Science > QA Mathematics
Divisions:Science
ID Code:97713
Deposited By: Widya Wahid
Deposited On:31 Oct 2022 06:15
Last Modified:31 Oct 2022 06:15

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