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Aerodynamics And Its Applications

Aerodynamics And Its Applications

Aerodynamics And Its Applications

This note explains the following topics: introduction to gas dynamics, Conservation laws, Fundamentals of compressible fluid flow and Shock Phenomena, Aerodynamic drag, transonic flow and helicopter aerodynamics and also covers computational fluid dynamics and practical applications like wind tunnel testing techniques.

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s285 Pages
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Aerodynamics Lecture Notes

Aerodynamics Lecture Notes

This note covers the following topics: Kinematics of a Fluid Element, Stress-Strain Relationship for a Newtonian Fluid, Brequet Range Equation, Coordination Transformations for Strain and Stress Rates, Equations of Aircraft Motion, Viscous Flow, Integral Boundary Layer Equations, Correlation Methods for Integral Boundary Layers, Falkner-Skan Flows, Three-Dimensional Wall Effects, Subsonic Small Disturbance Potential Flow, Waves in 1D Compressible Flow, Normal Shock Waves, Linearized Compressible Potential Flow Governing Equation, Oblique Shock Waves, Prandtl-Meyer Expansion Waves, Computational Methods for the Euler Equations, Solution Convergence.

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Principles of Aerodynamics

Principles of Aerodynamics

This note covers the following topics: Historical Background, Parts of an Aircraft, Stability, Aerospace Terminology, Forces on Aircraft, Lift and Drag, Airfoils, Pi Theorem, Energy Equation, Substantial Derivative, Pathline and stream line, Uniform Flow, source flow, Uniform Flow, Propulsion, Operational Envelopes, Standard Atmosphere, Air-breathing Engines, Aircraft Performance, Rocket Engines, Review of Gas Dynamics, H-K Diagram, Normal shock wave, Flow with heat addition, Flow with friction.

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