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Compressible fluid flow

Author: Michel A Saad
Publisher: Englewood Cliffs, N.J. : Prentice Hall, ©1993.
Edition/Format:   Print book : English : 2nd edView all editions and formats
Summary:

Develops the fundamental concepts and governing equations of compressible flow and illustrates their applications.

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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Michel A Saad
ISBN: 0131613731 9780131613737
OCLC Number: 25283108
Description: xii, 688 pages : illustrations ; 25 cm
Contents: 1. Fundamental Concepts and Definitions --
1.2. Dimensions and Units --
1.3. The Laws of Thermodynamics --
1.4. Conditions of Equilibrium --
1.5. Properties of Fluids --
1.6. Pressure --
1.7. Viscosity --
1.8. Stagnation Properties --
1.9. Adiabatic Wall Temperature --
1.10. Speed of Sound --
1.11. The Mach Number and the Mach Angle --
1.12. Classification of Fluid Flow --
2. Equations of Flow --
2.2. Law of Conservation of Mass --
The Continuity Principle --
2.3. Continuity Equation in Cartesian Coordinates --
2.4. Momentum Principle --
2.5. Dynamic Analysis and Euler's Equation --
2.6. Bernoulli's Equation --
2.7. The First Law of Thermodynamics for a Control Volume --
2.8. The Second Law of Thermodynamics for a Control Volume --
2.9. Comparison of the Energy Equation, the Bernoulli Equation, and the Entropy Equation --
2.10. Compressibility Effects --
2.11. Fluid Rotation --
2.12. Velocity Potential --
2.13. Stream Function --
2.14. Equations of Motion in Terms of the Velocity Potential Function --
3. Isentropic Flow --
3.2. Flow in a Duct of Varying Cross-Sectional Area --
3.3. Property Relations for Isentropic Flow of a Perfect Gas --
3.4. Mass Rate of Flow in Terms of Mach Number --
3.5. Isentropic Flow through a Nozzle --
3.6. Tabular and Graphical Representation of Isentropic Relations --
3.7. Impulse Function --
3.8. Real Nozzles and Diffusers --
4. Normal Shock Waves --
4.2. Formation of Compression and Expansion Waves --
4.3. Governing Equations --
4.4. Prandtl Relations --
4.5. Rankine-Hugoniot Relations --
4.6. Fanno and Rayleigh Lines --
4.7. Normal Shock in a Convergent-Divergent Nozzle --
4.8. Supersonic Diffusers --
4.9. Supersonic Wind Tunnels --
4.10. Moving Shock Waves --
4.11. The Shock Tube --
5. Adiabatic Frictional Flow in a Constant-Area Duct --
5.2. Governing Equations --
5.3. The Fanno Line --
5.4. Equations Relating Flow Variables --
5.5. Frictional Flow in a Constant-Area Duct Preceded by an Isentropic Nozzle --
5.6. Adiabatic Flow with Friction in a Variable-Area Duct --
6. Flow with Heat Interaction and Generalized Flow --
6.2. Governing Equations --
6.3. Tables of Properties --
6.4. Rayleigh Line --
6.5. Combustion Waves --
6.6. Chapman-Jouguet Waves --
6.7. Isothermal Flow with Friction in a Constant-Area Duct --
6.8. Flow in a Variable-Area Duct with Heat Interaction --
6.9. Generalized Flow --
6.10. Flow in a Frictional Constant-Area Duct with Heat Transfer --
7. Two-Dimensional Waves --
7.2. Governing Equations --
7.3. Prandtl Relation --
7.4. Property Relations --
7.5. Relation between M[subscript x] and M[subscript y] --
7.6. Relation among M[subscript x], [delta], and [sigma] --
7.7. Charts for Oblique Shock Waves --
7.8. The Shock Polar Diagram --
7.9. The Pressure-[delta] Diagram --
7.10. Detached Shock --
7.11. Prandtl-Meyer Flow --
7.12. Reflection and Interaction of Oblique Shock Waves --
7.13. Supersonic Diffusers --
8. Linearized Flow --
8.2. Linearized Potential Flow --
8.3. Pressure Coefficient --
8.4. Subsonic Flow over a Wavy Wall --
8.5. Similarity Laws for Subsonic Flow --
8.6. Prandtl-Glauert Rules --
8.7. Linearized Supersonic Flow --
8.8. Airfoils in Supersonic Flow --
8.9. Two-Dimensional Airfoils --
9. Methods of Characteristics --
9.2. Propagation of Small Disturbances --
9.3. Propagation of Finite Disturbances --
9.4. One-Dimensional Characteristics --
9.5. Equations of Characteristics for Two-Dimensional Flow --
9.6. Characteristic Curves in the Hodograph Plane --
9.7. Numerical Computation --
9.8. Flow over a Curved Wall --
9.9. Design of Supersonic Nozzles --
9.10. Intersection of Characteristics with a Shock Wave --
Appendix --
The Wave Equation --
10. Computational Fluid Dynamics --
10.2. Explicit Finite-Difference Scheme --
10.3. Stability of the Solution --
10.4. Implicit Finite-Difference Scheme --
10.5. Symmetric Crank-Nicolson Scheme --
10.6. Convection Equation --
10.7. MacCormack Method --
10.8. Convection-Diffusion Equation --
10.9. Nonlinear Scalar Model Equation --
10.10. Fluid Dynamic Equations for Inviscid Flow --
11. Methods of Experimental Measurements --
11.2. Pressure Measurement --
11.3. Temperature Measurement --
11.4. Velocity Measurement --
11.5. Laser Doppler Velocimetry --
11.6. Flow Visualization --
Optical Methods --
Appendix: Tables and Figures --
General References.
Responsibility: Michel A. Saad.
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