MHD Rotating Fluid Flow past a Vertical Plate that Applies Arbitrary Shear Stress with Ramped Wall Temperature

Authors

  • Arshad Khan The University of Agriculture, Peshawar

DOI:

https://doi.org/10.33959/cuijca.v3i2.9

Abstract

Heat transfer in rotating, incompressible viscous ?‡uid near an in?…nite ver-
tical plate that applies a time-dependent shear stress f(t) with ramped wall temperature
is investigated. Closed form exact solutions of the dimensionless governing equations along
with imposed initial and boundary conditions are determined using the Laplace transform
technique. These solutions are uncommon in literature and can generate exact solutions for
any motion of problem with technical relevance of this type. The e?¤ects of di?¤erent system
parameters, such as Ekman number, Grashof number, Prandtl number, magnetic number
and time on the velocity is examined in detail. Its in?‡uence on the ?‡uid motion is graphically
displayed. Some special cases together with particular cases are considered.

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Published

2020-02-03

How to Cite

Khan, A. (2020). MHD Rotating Fluid Flow past a Vertical Plate that Applies Arbitrary Shear Stress with Ramped Wall Temperature. City University International Journal of Computational Analysis, 3(2), 1–15. https://doi.org/10.33959/cuijca.v3i2.9

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Articles