P. A. Davidson, Professor of Fluid Mechanics, Department of Engineering, University of Cambridge
Inhaltsangabe
* 1: Elementary Definitions, Some Simple Kinematics and the Dynamics of Ideal Fluids * 2: Governing Equations and Flow Regimes for a Real Fluid * 3: Some Elementary Solutions of the Navier-Stokes Equation * 4: Flows with Negligible Inertia: Stokes Flow, Lubrication Theory and Thin Films * 5: Laminar Flow at High Reynolds Number: Boundary Layers * 6: Potential Flow Theory with Applications to Aerodynamics * 7: Surface Gravity Waves in Deep and Shallow Water * 8: Vortex Dynamics: Classical Theory and Illustrative Examples * 9: Waves and Flow in a Stratified Fluid * 10: Waves and Flow in a Rotating Fluid * 11: Instability * 12: The Transition to Turbulence and the Nature of Chaos * 13: An Introduction to Turbulence and to Kolmogorov's Theory * 14: Turbulent Shear Flows and Simple Closure Models * 15: Appendices
* 1: Elementary Definitions, Some Simple Kinematics and the Dynamics of Ideal Fluids * 2: Governing Equations and Flow Regimes for a Real Fluid * 3: Some Elementary Solutions of the Navier-Stokes Equation * 4: Flows with Negligible Inertia: Stokes Flow, Lubrication Theory and Thin Films * 5: Laminar Flow at High Reynolds Number: Boundary Layers * 6: Potential Flow Theory with Applications to Aerodynamics * 7: Surface Gravity Waves in Deep and Shallow Water * 8: Vortex Dynamics: Classical Theory and Illustrative Examples * 9: Waves and Flow in a Stratified Fluid * 10: Waves and Flow in a Rotating Fluid * 11: Instability * 12: The Transition to Turbulence and the Nature of Chaos * 13: An Introduction to Turbulence and to Kolmogorov's Theory * 14: Turbulent Shear Flows and Simple Closure Models * 15: Appendices
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