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Table of Contents
Introduction
Conservation Equations for Laminar Mixed Convection
An Innovative Similarity Transformation
Similarity Transformation of Governing Partial Differential Equations
Hydrodynamics
Heat Transfer
Similarity Transformation of Governing Partial Differential Equations
Velocity Fields
Skin-Friction Coefficient.- Temperature Fields
Theoretical Heat Transfer Equation and Wall Temperature Gradient
Effect of Local Prandtl Number on Wall Temperature Gradient
Formulization Equations of Wall Temperature Gradient
Verification of Formulated Correlation Equations on Wall Temperature Gradient.
Conservation Equations for Laminar Mixed Convection
An Innovative Similarity Transformation
Similarity Transformation of Governing Partial Differential Equations
Hydrodynamics
Heat Transfer
Similarity Transformation of Governing Partial Differential Equations
Velocity Fields
Skin-Friction Coefficient.- Temperature Fields
Theoretical Heat Transfer Equation and Wall Temperature Gradient
Effect of Local Prandtl Number on Wall Temperature Gradient
Formulization Equations of Wall Temperature Gradient
Verification of Formulated Correlation Equations on Wall Temperature Gradient.