Laplace Transforms Method on a System of Differential Equations for Non-isothermal Chemically Reactive Flow

Nwaoburu, Adolphus Okechukwu and Okolie, Hope Osogom (2022) Laplace Transforms Method on a System of Differential Equations for Non-isothermal Chemically Reactive Flow. Asian Research Journal of Mathematics, 18 (11). pp. 170-185. ISSN 2456-477X

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Abstract

This study analyses Laplace transforms method on a system of partially coupled differential equations for non-isothermal chemically reactive flow through a cylindrical channel. The dimensionless governing equation for velocity, temperature and concentration was solved using Laplace Transform. Various parameters such as Temperature boundary parameter, Concentration boundary parameter, Cooling Parameter, Grashof number, pressure gradient and Magnetic field, as well as perturbation parameter had an effect on the velocity profile as well as temperature and concentration profile. The graphs were obtained with the results showing that an increase in the temperature boundary parameter resulted to an increase in the temperature of flow, an increase in perturbation parameter resulted to an increase in temperature profile of a body and an increase in Grashof temperature number results to an increase in the velocity of the body.

Item Type: Article
Uncontrolled Keywords: Laplace transform differential equations temperature concentration velocity
Subjects: Eurolib Press > Mathematical Science
Depositing User: Managing Editor
Date Deposited: 11 Sep 2023 10:01
Last Modified: 11 Sep 2023 10:01
URI: http://info.submit4journal.com/id/eprint/2308

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