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Introduction to Fluid Mechanics
Chapter 12 Introduction to Compressible Flow
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Main Topics Review of Thermodynamics Propagation of Sound Waves
Reference State: Local Isentropic Stagnation Conditions Critical Conditions Basic Equations for One-Dimensional Compressible Flow Isentropic Flow of an Ideal Gas: Area Variation Normal Shocks Supersonic Channel Flow with Shocks Flow in a Constant-Area Duct with Friction Frictionless Flow in a Constant-Area Duct with Heat Exchange Oblique Shocks and Expansion Waves
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Review of Thermodynamics
Ideal Gas
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Review of Thermodynamics
Specific Heat Formulas
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Review of Thermodynamics
Internal Energy and Enthalpy
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Review of Thermodynamics
Entropy
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Review of Thermodynamics
The Second Law of Thermodynamics
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Review of Thermodynamics
Isentropic (Reversible Adiabatic) Processes
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Propagation of Sound Waves
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Propagation of Sound Waves
Speed of Sound Solids and Liquids: Ideal Gas:
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Propagation of Sound Waves
Types of Flow – The Mach Cone
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Propagation of Sound Waves
Types of Flow – The Mach Cone (Continued) Mach Angle:
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Reference State: Local Isentropic Stagnation Conditions
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Reference State: Local Isentropic Stagnation Conditions
Computing Equations
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Critical Conditions A useful reference value for velocity is the critical speed —the speed V we attain when a flow is either accelerated or decelerated (actually or conceptually) isentropically until we reach M=1.
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Basic Equations for One-Dimensional Compressible Flow
Control Volume Steady flow. One-dimensional flow.
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Basic Equations for One-Dimensional Compressible Flow
Continuity Momentum Assumption: FBx =0
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Basic Equations for One-Dimensional Compressible Flow
First Law of Thermodynamics Ws =0 Wshear =Wother =0 Effects of gravity are negligible Second Law of Thermodynamics
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Basic Equations for One-Dimensional Compressible Flow
Equation of State Property Relations
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Isentropic Flow of an Ideal Gas: Area Variation
Basic Equations for Isentropic Flow
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Isentropic Flow of an Ideal Gas: Area Variation
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Isentropic Flow of an Ideal Gas: Area Variation
Subsonic, Supersonic, and Sonic Flows
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Isentropic Flow of an Ideal Gas: Area Variation
Reference Stagnation and Critical Conditions for Isentropic Flow
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Isentropic Flow of an Ideal Gas: Area Variation
Property Relations
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Isentropic Flow of an Ideal Gas: Area Variation
A/A*
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Isentropic Flow of an Ideal Gas: Area Variation
Isentropic Flow in a Converging Nozzle
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Isentropic Flow of an Ideal Gas: Area Variation
Isentropic Flow in a Converging Nozzle
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Isentropic Flow of an Ideal Gas: Area Variation
Isentropic Flow in a Converging-Diverging Nozzle
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Isentropic Flow of an Ideal Gas: Area Variation
Isentropic Flow in a Converging-Diverging Nozzle
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Normal Shocks Control Volume
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Normal Shocks Basic Equations for a Normal Shock
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Normal Shocks Normal Shock Relations
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Normal Shocks Normal Shock Relations (Continued)
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Supersonic Channel Flow with Shocks
Flow in a Converging-Diverging Nozzle
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Flow in a Constant-Area Duct with Friction
Control Volume
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Flow in a Constant-Area Duct with Friction
Basic Equations for Adiabatic Flow
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Flow in a Constant-Area Duct with Friction
Adiabatic Flow: The Fanno Line
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Flow in a Constant-Area Duct with Friction
Fanno-Line Flow Functions for One-Dimensional Flow of an Ideal Gas
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Flow in a Constant-Area Duct with Friction
Fanno-Line Relations
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Flow in a Constant-Area Duct with Friction
Fanno-Line Relations (Continued)
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Frictionless Flow in a Constant-Area Duct with Heat Exchange
Control Volume
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Frictionless Flow in a Constant-Area Duct with Heat Exchange
Basic Equations for Flow with Heat Exchange
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Frictionless Flow in a Constant-Area Duct with Heat Exchange
Heat Exchange: The Rayleigh Line
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Frictionless Flow in a Constant-Area Duct with Heat Exchange
Rayleigh-Line Relations
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Normal Shocks Fanno and Rayleigh Interpretation
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Oblique Shocks and Expansion Waves
Mach Angle and Oblique Shock Angle
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Oblique Shocks and Expansion Waves
Oblique Shock: Control Volume
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Oblique Shocks and Expansion Waves
Oblique Shock: Useful Formulas Steady flow Negligible body forces Adiabatic flow No work terms Negligible gravitational effect
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Oblique Shocks and Expansion Waves
Oblique Shock Relations
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Oblique Shocks and Expansion Waves
Oblique Shock Relations (Continued)
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Oblique Shocks and Expansion Waves
Oblique Shock: Deflection Angle
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Oblique Shocks and Expansion Waves
Oblique Shock: Deflection Angle
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Oblique Shocks and Expansion Waves
Expansion and Compression Waves
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Oblique Shocks and Expansion Waves
Expansion Wave: Control Volume
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Oblique Shocks and Expansion Waves
Expansion Wave: Prandtl-Meyer Expansion Function
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Oblique Shocks and Expansion Waves
Expansion Wave: Isentropic Relations
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