Salawu, S. O. and Okedoye, A. M. (2018) Thermodynamic Second Law Analysis of Hydromagnetic Gravity-Driven Two-step Exothermic Chemical Reactive Flow with Heat Absorption Along a Channel. Iranica Journal of Energy & Environment, 9 (2). pp. 114-120. ISSN 2079-2115
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IJEE_Volume 9_Issue 2_Pages 114-120.pdf - Published Version Download (1MB) |
Abstract
This study examines the second law of thermodynamic gravity-driven viscous combustible fluid flow of two-step exothermic chemical reaction with heat absorption and convective cooling under bimolecular kinetic. The flow is acted uponby periodic changes in the axial pressure gradient and time along the axis of the channel with the existence of magnetic field. The heat convection at the channel surfaces with the environment are the same and satisfies Newtons law of cooling. The dimensionless main equations of the flow are solved using a convergent and stable semi-implicit finite difference method. The effect of some fluid parameters associated with the problem on momentum and temperature are obtained. The expression for irreversibility ratio, volumetric entropy generation and Bejan number along with the graphically results are presented and quantitatively discussed
Item Type: | Article |
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Subjects: | Q Science > QA Mathematics |
Depositing User: | Mr DIGITAL CONTENT CREATOR LMU |
Date Deposited: | 25 Sep 2019 14:45 |
Last Modified: | 25 Sep 2019 14:45 |
URI: | https://eprints.lmu.edu.ng/id/eprint/2400 |
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