Numerical Solution of Mixed Convective Laminar Boundary Layer Flow around a Vertical Slender Body with Suction or Blowing
Date
2014-08
Authors
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Publisher
Khulna University of Engineering & Technology (KUET), Khulna, Bangladesh.
Abstract
In this dissertation, numerical solution of mixed convective laminar boundary layer flow around a vertical slender body with suction or blowing has been investigated. Firstly, the governing boundary layer partial differential equations have been made dimensionless and then simplified by using Boussinesq approximation. Secondly, similarity transformations are introduced on the basis of detailed analysis in order to transform the simplified coupled partial differential equations into a set a ordinary differential equations. The transformed complete similarity equations are solved numerically by using computer software. The flow phenomenon has been characterized with the help of obtained flow controlling parameters such as suction parameter, buoyancy parameter, Prandtl number, body-radius parameter and other driving parameters. Finally the effects of involved parameters on the velocity and temperature distributions are presented graphically. It is found that a small suction or blowing can play a significant role on the velocity and temperature fields.
Description
This thesis is submitted to the Department of Mathematics, Khulna University of Engineering & Technology in partial fulfillment of the requirements for the degree of Master of Philosophy in Mathematics, August 2014.
Cataloged from PDF Version of Thesis.
Includes bibliographical references (pages 72-79).
Cataloged from PDF Version of Thesis.
Includes bibliographical references (pages 72-79).
Keywords
Mixed Convective Laminar Boundary Layer Flow, Vertical Slender Body
