2021
DOI: 10.1007/s42452-021-04140-3
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Numerical simulation of periodic MHD casson nanofluid flow through porous stretching sheet

Abstract: The perspective of this paper is to characterize a Casson type of Non-Newtonian fluid flow through heat as well as mass conduction towards a stretching surface with thermophoresis and radiation absorption impacts in association with periodic hydromagnetic effect. Here heat absorption is also integrated with the heat absorbing parameter. A time dependent fundamental set of equations, i.e. momentum, energy and concentration have been established to discuss the fluid flow system. Explicit finite difference techni… Show more

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Cited by 47 publications
(22 citation statements)
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“…Reza-E-Rabbi et al . 10 , 11 and Al-Mamun et al 12 addressed the hydrodynamic flow characteristics of multiphase radiative Maxwell and Casson fluids across a stretched surface containing nano-sized particles. Bhatti et al .…”
Section: Introductionmentioning
confidence: 99%
“…Reza-E-Rabbi et al . 10 , 11 and Al-Mamun et al 12 addressed the hydrodynamic flow characteristics of multiphase radiative Maxwell and Casson fluids across a stretched surface containing nano-sized particles. Bhatti et al .…”
Section: Introductionmentioning
confidence: 99%
“…An addition in the values of magnetic parameter unveils a slumping effect on an equivalent behaviour in . Sandeep et al 57 also noticed this characteristic, who considered an unsteady MHD nanofluid flow embedded with nanoparticles in a thin-film. The increase in the unsteadiness parameter S and curtail the local skin friction, thereby decreasing the magnitude of the wall shear stress.…”
Section: Resultsmentioning
confidence: 83%
“…Similarly, Al-Mamun eta al. 57 and Oztop et al 58 explored the periodic MHD Casson nanofluid movement past a stretching sheet numerically. Upreti et al 59 investigated the MHD Ag-water nanofluid over stretching sheet.…”
Section: Introductionmentioning
confidence: 99%
“…Furthermore, the novel and intriguing phenomena of current communication are the incorporation of an electric field, 40,41 Darcy-Forchheimer flow, 42,43 exothermic/endothermic feature, stagnation point flow, 44 Arrhenius activation vitality, 45 triple stratification, and thermophoretic particle deposition 46,47 in an MHD 48 nano-bioconvective 49 system. A robust utensil, finite difference approach [50][51][52][53][54][55][56][57] is used for solving the fabricated flow model. Achieved upshots for interesting physical quantities of nano-bioconvective flow problems are illustrated with the aid of graphical and tabular approaches.…”
Section: Introductionmentioning
confidence: 99%