4.5 Article

Flow of Brinkman Fluid with Heat Generation and Chemical Reaction

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COMPLEXITY
卷 2021, 期 -, 页码 -

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WILEY-HINDAWI
DOI: 10.1155/2021/5757991

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The study discusses unsteady magnetohydrodynamics flow of fractionalized Brinkman-type fluid over a vertical plate, considering additional effects such as heat generation/absorption and chemical reaction. The model is solved using the Caputo fractional derivative and governing dimensionless equations for velocity, concentration, and temperature profiles are solved using the Laplace transform method. Different parameters like fractional parameter, heat generation/absorption Q, chemical reaction R, and magnetic parameter M are analyzed through numerous graphs, showing the effects on the fluid velocity profile.
Unsteady magnetohydrodynamics (MHD) flow of fractionalized Brinkman-type fluid over a vertical plate is discussed. In the model of problem, additional effects such as heat generation/absorption and chemical reaction are also considered. The model is solved by using the Caputo fractional derivative. The governing dimensionless equations for velocity, concentration, and temperature profiles are solved using the Laplace transform method and compared graphically. The effects of different parameters like fractional parameter, heat generation/absorption Q, chemical reaction R, and magnetic parameter M are discussed through numerous graphs. Furthermore, comparison among ordinary and fractionalized velocity fields are also drawn. From the figures, it is observed that chemical reaction and magnetic field have decreasing effect on velocity profile, whereas thermal radiation and mass Grashof numbers have increasing effect on the velocity of the fluid.

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