Please use this identifier to cite or link to this item: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/639
Title: Boundary Layer Flow of Rarefied Gas Over a Flat Plate with Constant Heat Flux Boundary Conditions
Authors: Ma'ali, Aliyu Ishaku
Mohammed, Umaru
Abubakar, Abdulkadir
Badeggi, Aliyu Yahaya
Keywords: Heat Flux
Skin-friction
Velocity
Momentum
Radiation
Issue Date: Dec-2018
Publisher: Lapai Journal of applied and Natural Sciences
Citation: A.I Ma’ali, U. Mohammed and A. Abubakar A Y Badeggi (2018) Boundary Layer Flow of Rarefied Gas Over a Flat Plate with Constant Heat Flux Boundary Conditions. Lapai Journal of applied and Natural Sciences. 3(1) pp 90-94
Series/Report no.: 3(1);90-94
Abstract: In the current work, Boundary layer flow of rarefied gas over a flat plate with constant heat flux boundary conditions is presented and solved numerically. The first-order slip boundary condition is adopted in the derivation. By using appropriate similarity variables, the fundamental equations of the boundary layer are transformed to ordinary differential equations. These ordinary differential equations are solved numerically using a fourth order Runge-Kutta and shooting method. The dimensionless velocity, temperature and shear stress profiles are plotted and discussed. Consequently, the velocity profiles, temperature profiles and the wall shear stress exhibit a dependence on the slip coefficient. It is found that an increase in slip parameter leads to an increase in velocity and a fall in skin-friction.
URI: http://www.lajans.com.ng/vol_3_iss_1.php
http://repository.futminna.edu.ng:8080/jspui/handle/123456789/639
Appears in Collections:Mathematics

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