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Title of Thesis

Convective heat transfer analysis for Non-Newtonian fluids under different wall conditions

Author(s)

Naeem Mustafa

Institute/University/Department Details
Department Of Mathematics / Comsats Institute Of Information Technology, Islamabad
Session
2011
Subject
Mathematics
Number of Pages
130
Keywords (Extracted from title, table of contents and abstract of thesis)
Flow, Transfer, Conditions, Mechanism, Newtonian, Wall, Prominent, Diaphragm, Convective, Numerical, Analysts, Analysis, Different, Fluids, Variable

Abstract
Not Available

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1,136 KB
S. No. Chapter Title of the Chapters Page Size (KB)
1 0 CONTENTS

 

xix
77 KB
2

1

INTRODUCTION

 

1
176 KB
3 2 PRELIMINARIES

2.1 Non-Newtonian fluids
2.2 Convective heat transfer
2.3 Forced and natural convection
2.4 Definition of some dimensionless parameters
2.5 Approximations in natural convection flow
2.6 Continuity equation
2.7 Momentum equation
2.8 Energy equation

9
220 KB
4 3 NATURAL CONVECTION FLOW OF SECOND-GRADE FLUID ALONG A VERTICAL HEATED SURFACE WITH POWER-LAW TEMPERATURE

3.1 Formulation of the problem
3.2 Solution methodologies
3.3 Results and discussions
3.4 Conclusions

20
387 KB
5

4

NATURAL CONVECTION FLOW OF SECOND-GRADE FLUID ALONG A VERTICAL HEATED SURFACE WITH VARIABLE HEAT FLUX

4.1 Problem formulation
4.2 Solution methods for the problem
4.3 Results and discussions
4.4 Conclusions

41
585 KB
6

5

DISSIPATION EFFECTS ON NATURAL CONVECTION FLOW OF SECONDGRADE FLUID ALONG A VERTICAL PLATE WITH VARIABLE SURFACE TEMPERATURE

5.1 Mathematical formulation
5.2 Solution methodologies
5.3 Results and discussions
5.4 Conclusions

61
260 KB
7

6

NATURAL CONVECTION FLOW FOR SECOND GRADE VISCOELASTIC FLUID THROUGH PERMEABLE EXPANDING/CONTRACTING WALLS HAVING VARIABLE SURFACE TEMPERATURE

6.1 Mathematical analysis of the problem
6.2 Solution methodologies
6.3 Results and discussions
6.4 Conclusions

74
294 KB
8

7

CONVECTIVE HEAT TRANSFER FOR SECOND GRADE FLUID BETWEEN VERTICAL PERMEABLE EXPANDING AND CONTRACTING WALLS HAVING VARIABLE HEAT FLUX

7.1 Mathematical analysis
7.2 Solution methodologies
7.3 Results and discussions
7.4 Conclusions

91
243 KB
9

8

REFERENCES

 

101
127 KB