Aerospace Propulsion

Aerospace Propulsion
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Artikel-Nr:
9781118534878
Veröffentl:
2013
Einband:
E-Book
Seiten:
320
Autor:
T. W. Lee
Serie:
Aerospace Series (PEP)
eBook Typ:
EPUB
eBook Format:
Reflowable E-Book
Kopierschutz:
Adobe DRM [Hard-DRM]
Sprache:
Englisch
Beschreibung:

Aerospace propulsion devices embody some of the most advanced technologies, ranging from materials, fluid control, and heat transfer and combustion. In order to maximize the performance, sophisticated testing and computer simulation tools are developed and used. Aerospace Propulsion comprehensively covers the mechanics and thermal-fluid aspects of aerospace propulsion, starting from the fundamental principles, and covering applications to gas-turbine and space propulsion (rocket) systems. It presents modern analytical methods using MATLAB and other advanced software and includes essential elements of both gas-turbine and rocket propulsion systems. Gas turbine coverage includes thermodynamic analysis, turbine components, diffusers, compressors, turbines, nozzles, compressor-turbine matching, combustors and afterburners. Rocket coverage includes chemical rockets, electrical rockets, nuclear and solar sail. Key features: Both gas-turbine and rocket propulsion covered in a single volume Presents modern analytical methods and examples Combines fundamentals and applications, including space applications Accompanied by a website containing MATLAB examples, problem sets and solutions Aerospace Propulsion is a comprehensive textbook for senior undergraduate graduate and aerospace propulsion courses, and is also an excellent reference for researchers and practicing engineers working in this area.
Aerospace propulsion devices embody some of the most advanced technologies, ranging from materials, fluid control, and heat transfer and combustion. In order to maximize the performance, sophisticated testing and computer simulation tools are developed and used.Aerospace Propulsion comprehensively covers the mechanics and thermal-fluid aspects of aerospace propulsion, starting from the fundamental principles, and covering applications to gas-turbine and space propulsion (rocket) systems. It presents modern analytical methods using MATLAB and other advanced software and includes essential elements of both gas-turbine and rocket propulsion systems. Gas turbine coverage includes thermodynamic analysis, turbine components, diffusers, compressors, turbines, nozzles, compressor-turbine matching, combustors and afterburners. Rocket coverage includes chemical rockets, electrical rockets, nuclear and solar sail.Key features:* Both gas-turbine and rocket propulsion covered in a single volume* Presents modern analytical methods and examples* Combines fundamentals and applications, including space applications* Accompanied by a website containing MATLAB examples, problem sets and solutionsAerospace Propulsion is a comprehensive textbook for senior undergraduate graduate and aerospace propulsion courses, and is also an excellent reference for researchers and practicing engineers working in this area.
Series Preface ixPreface xi1 Introduction to Propulsion Systems 11.1 Conservation of Momentum 71.2 Conservation of Energy (the First Law of Thermodynamics) and Other Thermodynamic Relationships 101.3 One-Dimensional Gas Dynamics 131.4 Heat Transfer 141.5 Standard Atmospheric Air Properties 151.6 Unit Conversion 171.7 Problems 20Bibliography 202 Principle of Thrust 212.1 Thrust Configurations 212.2 Thrust Equation 232.3 Basic Engine Performance Parameters 282.4 Propulsion and Aircraft Performance 342.5 Propeller Propulsion 382.6 MATLAB1 Program 392.7 Problems 40Bibliography 423 Basic Analyses of Gas-Turbine Engines 433.1 Introduction 433.2 Gas-Turbine Engine as a Power Cycle (Brayton Cycle) 433.3 Ideal-Cycle Analysis for Turbofan Engines 493.4 Turbojets, Afterburners and Ramjets 613.5 Further Uses of Basic Engine Analysis 733.6 MATLAB1 Program 763.7 Problems 77Bibliography 794 Gas-Turbine Components: Inlets and Nozzles 814.1 Gas-Turbine Inlets 814.2 Subsonic Diffuser Operation 824.3 Supersonic Inlet Operation 914.4 Gas-Turbine Nozzles 954.5 Problems 98Bibliography 995 Compressors and Turbines 1015.1 Introduction 1015.2 Basic Compressor Aero-Thermodynamics 1035.3 Radial Variations in Compressors 1155.4 Preliminary Compressor Analysis/Design 1195.5 Centrifugal Compressors 1205.6 Turbine 1235.7 MATLAB1 Programs 1295.8 Problems 131Bibliography 1336 Combustors and Afterburners 1356.1 Combustion Chambers 1356.2 Jet Fuels and Heating Values 1376.3 Fluid Mixing in the Combustor 1416.4 Afterburners 1496.5 Combustor Heat Transfer 1526.6 Stagnation Pressure Loss in Combustors 1536.7 Problems 155Bibliography 1577 Gas-Turbine Analysis with Efficiency Terms 1597.1 Introduction 1597.2 Turbofan Engine Analysis with Efficiency Terms 1607.3 MATLAB1 Program 1727.4 Problems 174Bibliography 1758 Basics of Rocket Propulsion 1778.1 Introduction 1778.2 Basic Rocketry 1828.3 MATLAB1 Programs 1898.4 Problems 190Bibliography 1919 Rocket Propulsion and Mission Analysis 1939.1 Introduction 1939.2 Trajectory Calculations 1959.3 Rocket Maneuvers 2039.4 Missile Pursuit Algorithms and Thrust Requirements 2099.5 Problems 213Bibliography 21510 Chemical Rockets 21710.1 Rocket Thrust 21710.2 Liquid Propellant Rocket Engines 22010.3 Solid Propellant Combustion 24410.4 Rocket Nozzles 25210.5 MATLAB1 Program 25610.6 Problems 256Bibliography 25811 Non-Chemical Rockets 25911.1 Electrothermal Devices 26111.2 Ion Thrusters 26511.3 Problems 280Bibliography 282Appendices 283Appendix A: Standard Atmospheric Air Properties 283Appendix B: Specific Heats for Air as a Function of Temperature 286Appendix C: Normal Shock Properties 287Appendix D: Oblique Shock Angle Chart 291Appendix E: Polynomial Coefficients for Specific Heat of Selected Gases 292Appendix F: Standard state Gibbs free energy 293Index 295

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