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Elements of Gas Dynamics
Elements of Gas Dynamics
Autore Liepmann H. W (Hans Wolfgang), <1914-2009.>
Edizione [1st ed.]
Pubbl/distr/stampa Newburyport, : Dover Publications, 2013
Descrizione fisica 1 online resource (792 p.)
Disciplina 533/.2
Altri autori (Persone) RoshkoA
Collana Dover Books on Aeronautical Engineering
Soggetto topico Gas dynamics
Aerodynamics
Engineering & Applied Sciences
Applied Physics
ISBN 9781523109630
1523109637
9780486316857
0486316858
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright Page; Editors' Preface; Authors' Preface; Contents; Chapter 1. Concepts from Thermodynamics; 1.1 - Introduction; 1.2 - Thermodynamic Systems; 1.3 - Variables of State; 1.4 - The First Principal Law; 1.5 - Irreversible and Reversible Processes; 1.6 - Perfect Gases; 1.7 - The First Law Applied to Reversible Processes. Specific Heats; 1.8 - The First Law Applied to Irreversible Processes; 1.9 - The Concept of Entropy. The Second Law; 1.10 - The Canonical Equation of State. Free Energy and Free Enthalpy; 1.11 - Reciprocity Relations
1.12 - Entropy and Transport Processes1.13* - Equilibrium Conditions; 1.14* - Mixtures of Perfect Gases; 1.15* - The Law of Mass Action; 1.16* - Dissociation; 1.17* - Condensation; 1.18 - Real Gases in Gasdynamics; Chapter 2. One-Dimensional Gasdynamics; 2.1 - Introduction; 2.2 - The Continuity Equation; 2.3 - The Energy Equation; 2.4 - Reservoir Conditions; 2.5 - Euler's Equation; 2.6 - The Momentum Equation; 2.7 - Isentropic Conditions; 2.8 - Speed of Sound; Mach Number; 2.9 - The Area-Velocity Relation; 2.10 - Results from the Energy Equation; 2.11 - Bernoulli Equation; Dynamic Pressure
2.12 - Flow at Constant Area2.13 - The Normal Shock Relations for a Perfect Gas; Chapter 3. One-Dimensional Wave Motion; 3.1 - Introduction; 3.2 - The Propagating Shock Wave; 3.3 - One-Dimensional Isentropic Equations; 3.4 - The Acoustic Equations; 3.5 - Propagation of Acoustic Waves; 3.6 - The Speed of Sound; 3.7 - Pressure and Particle Velocity in a Sound Wave; 3.8 - "Linearized" Shock Tube; 3.9 - Isentropic Waves of Finite Amplitude; 3.10 - Propagation of Finite Waves; 3.11 - Centered Expansion Wave; 3.12 - The Shock Tube; Chapter 4. Waves in Supersonic Flow; 4.1 - Introduction
4.2 - Oblique Shock Waves4.3 - Relation Between β and θ; 4.4 - Supersonic Flow Over a Wedge; 4.5 - Mach Lines; 4.6 - Piston Analogy; 4.7 - Weak Oblique Shocks; 4.8 - Supersonic Compression by Turning; 4.9 - Supersonic Expansion by Turning; 4.10 - The Prandtl-Meyer Function; 4.11 - Simple and Nonsimple Regions; 4.12 - Reflection and Intersection of Oblique Shocks; 4.13 - Intersection of Shocks of the Same Family; 4.14 - Detached Shocks; 4.15 - Mach Reflection; 4.16 - Shock-Expansion Theory; 4.17 - Thin Airfoil Theory; 4.18* - Flat Lifting Wings; 4.19* - Drag Reduction
4.20* - The Hodograph Plane4.21 - Cone in Supersonic Flow; Chapter 5. Flow in Ducts and Wind Tunnels; 5.1 - Introduction; 5.2 - Flow in Channel of Varying Area; 5.3 - Area Relations; 5.4 - Nozzle Flow; 5.5 - Normal Shock Recovery; 5.6 - Effects of Second Throat; 5.7 - Actual Performance of Wind Tunnel Diffusers; 5.8 - Wind Tunnel Pressure Ratio; 5.9 - Supersonic Wind Tunnels; 5.10 - Wind Tunnel Characteristics; 5.11 - Compressor Matching; 5.12 - Other Wind Tunnels and Testing Methods; Chapter 6. Methods of Measurement; 6.1 - Introduction; 6.2 - Static Pressure; 6.3 - Total Pressure
6.4 - Mach Number from Pressure Measurements
Record Nr. UNINA-9911006990003321
Liepmann H. W (Hans Wolfgang), <1914-2009.>  
Newburyport, : Dover Publications, 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Granular Gas Dynamics [[electronic resource] /] / edited by Thorsten Pöschel, Nikolai V. Brilliantov
Granular Gas Dynamics [[electronic resource] /] / edited by Thorsten Pöschel, Nikolai V. Brilliantov
Edizione [1st ed. 2003.]
Pubbl/distr/stampa Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2003
Descrizione fisica 1 online resource (XIV, 369 p.)
Disciplina 533/.2
Collana Lecture Notes in Physics
Soggetto topico Statistical physics
Dynamical systems
Continuum physics
Amorphous substances
Complex fluids
Phase transitions (Statistical physics)
Mechanics
Mechanics, Applied
Complex Systems
Classical and Continuum Physics
Soft and Granular Matter, Complex Fluids and Microfluidics
Phase Transitions and Multiphase Systems
Theoretical and Applied Mechanics
Statistical Physics and Dynamical Systems
ISBN 3-540-39843-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Part I: Kinetic Theory -- Asymptotic Solutions of the Nonlinear Boltzmann Equation for Dissipative Systems -- The Homogeneous Cooling State Revisited -- The Inelastic Maxwell Model -- Cooling Granular Gases: The Role of Correlations in the Velocity Field -- Self-Similar Asymptotics for the Boltzmann Equation With Inelastic Interactions -- Kinetic Integrals in the Kinetic Theory of Dissipative Gases -- Kinetics of Fragmenting Freely Evolving Granular Gases -- Part II: Granular Hydrodynamics -- Shock Waves in Granular Gases -- Linearized Boltzmann Equation and Hydrodynamics for Granular Gases -- Development of a Density Invesion in Driven Granular Gases -- Kinetic Theory for Inertia Flows of Dilute Turbulent Gas-Solids Two-Phase Mixtures -- Part III: Driven Gases and Structure Formation -- Driven Granular Gases -- Van der Waals-Like Transition in Fluidized Granular Matter -- Birth and Sudden Death of Granular Cluster -- Vibrated Granular Media as Experimentally Realized Granular Gases.
Record Nr. UNISA-996466791903316
Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2003
Materiale a stampa
Lo trovi qui: Univ. di Salerno
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Granular Gas Dynamics [[electronic resource] /] / edited by Thorsten Pöschel, Nikolai V. Brilliantov
Granular Gas Dynamics [[electronic resource] /] / edited by Thorsten Pöschel, Nikolai V. Brilliantov
Edizione [1st ed. 2003.]
Pubbl/distr/stampa Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2003
Descrizione fisica 1 online resource (XIV, 369 p.)
Disciplina 533/.2
Collana Lecture Notes in Physics
Soggetto topico Statistical physics
Dynamics
Field theory (Physics)
Amorphous substances
Complex fluids
Phase transformations (Statistical physics)
Mechanics
Mechanics, Applied
Complex Systems
Classical and Continuum Physics
Soft and Granular Matter, Complex Fluids and Microfluidics
Phase Transitions and Multiphase Systems
Theoretical and Applied Mechanics
Statistical Physics and Dynamical Systems
ISBN 3-540-39843-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Part I: Kinetic Theory -- Asymptotic Solutions of the Nonlinear Boltzmann Equation for Dissipative Systems -- The Homogeneous Cooling State Revisited -- The Inelastic Maxwell Model -- Cooling Granular Gases: The Role of Correlations in the Velocity Field -- Self-Similar Asymptotics for the Boltzmann Equation With Inelastic Interactions -- Kinetic Integrals in the Kinetic Theory of Dissipative Gases -- Kinetics of Fragmenting Freely Evolving Granular Gases -- Part II: Granular Hydrodynamics -- Shock Waves in Granular Gases -- Linearized Boltzmann Equation and Hydrodynamics for Granular Gases -- Development of a Density Invesion in Driven Granular Gases -- Kinetic Theory for Inertia Flows of Dilute Turbulent Gas-Solids Two-Phase Mixtures -- Part III: Driven Gases and Structure Formation -- Driven Granular Gases -- Van der Waals-Like Transition in Fluidized Granular Matter -- Birth and Sudden Death of Granular Cluster -- Vibrated Granular Media as Experimentally Realized Granular Gases.
Record Nr. UNINA-9910257386103321
Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Granular Gases [[electronic resource] /] / edited by Thorsten Pöschel, Stefan Luding
Granular Gases [[electronic resource] /] / edited by Thorsten Pöschel, Stefan Luding
Edizione [1st ed. 2001.]
Pubbl/distr/stampa Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2001
Descrizione fisica 1 online resource (IX, 457 p.)
Disciplina 533/.2
Collana Lecture Notes in Physics
Soggetto topico Condensed matter
Continuum physics
Statistical physics
Dynamical systems
Amorphous substances
Complex fluids
Mechanics
Mechanics, Applied
Condensed Matter Physics
Classical and Continuum Physics
Complex Systems
Soft and Granular Matter, Complex Fluids and Microfluidics
Theoretical and Applied Mechanics
Statistical Physics and Dynamical Systems
ISBN 3-540-44506-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Kinetic Theory and Hydrodynamics -- Kinetic Theory of Granular Gases -- Free Cooling of Particles with Rotational Degrees of Freedom -- Hydrodynamic Transport Coefficients of Granular Gases -- Granular Gases: Probing the Boundaries of Hydrodynamics -- Granular Gases with Impact-Velocity-Dependent Restitution Coefficient -- Boundary Conditions for Collisional Grain Flows at Bumpy, Frictional Walls -- Diffusion Process in Two-Dimensional Granular Gases -- Collisions and One-Dimensional Models -- Energy Loss and Aggregation Processes in Low Speed Collisions of Ice Particles Coated with Frosts or Methanol/Water Mixtures -- Contact Mechanics and Coefficients of Restitution -- Kinetic Theory for 1D Granular Gases -- Chains of Viscoelastic Spheres -- Vibrated Granular Media -- Experimental Studies of Vibro-fluidised Granular Beds -- Pattern Formation in a Vibrated Granular Layer -- Experimental Study of a Granular Gas Fluidized by Vibrations -- Computer Simulation of Vertically Vibrated Granular Layers in a Box with Sawtooth-Shaped Base -- Resonance Oscillations in Granular Gases -- Granular Astrophysics -- Dynamical Evolution of Viscous Discs. Astrophysical Applications to the Formation of Planetary Systems and to the Confinement of Planetary Rings and Arcs -- Numerical Simulations of the Collisional Dynamics of Planetary Rings -- Formation of Narrow Ringlets in Saturn’s Rings -- Granular Viscosity, Planetary Rings and Inelastic Particle Collisions -- Towards Dense Granular Systems -- The Equation of State for Almost Elastic, Smooth, Polydisperse Granular Gases for Arbitrary Density -- Experimental Observations of Non-equilibrium Distributions and Transitions in a 2D Granular Gas -- Effect of Excluded Volume and Anisotropy on Granular Statistics: “Fermi Statistics” and Condensation -- How Much Can We Simplify a System of Grains?.
Record Nr. UNISA-996466810503316
Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2001
Materiale a stampa
Lo trovi qui: Univ. di Salerno
Opac: Controlla la disponibilità qui
Granular Gases / / edited by Thorsten Pöschel, Stefan Luding
Granular Gases / / edited by Thorsten Pöschel, Stefan Luding
Edizione [1st ed. 2001.]
Pubbl/distr/stampa Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2001
Descrizione fisica 1 online resource (IX, 457 p.)
Disciplina 533/.2
Collana Lecture Notes in Physics
Soggetto topico Condensed matter
Field theory (Physics)
Statistical physics
Dynamics
Amorphous substances
Complex fluids
Mechanics
Mechanics, Applied
Condensed Matter Physics
Classical and Continuum Physics
Complex Systems
Soft and Granular Matter, Complex Fluids and Microfluidics
Theoretical and Applied Mechanics
Statistical Physics and Dynamical Systems
ISBN 3-540-44506-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Kinetic Theory and Hydrodynamics -- Kinetic Theory of Granular Gases -- Free Cooling of Particles with Rotational Degrees of Freedom -- Hydrodynamic Transport Coefficients of Granular Gases -- Granular Gases: Probing the Boundaries of Hydrodynamics -- Granular Gases with Impact-Velocity-Dependent Restitution Coefficient -- Boundary Conditions for Collisional Grain Flows at Bumpy, Frictional Walls -- Diffusion Process in Two-Dimensional Granular Gases -- Collisions and One-Dimensional Models -- Energy Loss and Aggregation Processes in Low Speed Collisions of Ice Particles Coated with Frosts or Methanol/Water Mixtures -- Contact Mechanics and Coefficients of Restitution -- Kinetic Theory for 1D Granular Gases -- Chains of Viscoelastic Spheres -- Vibrated Granular Media -- Experimental Studies of Vibro-fluidised Granular Beds -- Pattern Formation in a Vibrated Granular Layer -- Experimental Study of a Granular Gas Fluidized by Vibrations -- Computer Simulation of Vertically Vibrated Granular Layers in a Box with Sawtooth-Shaped Base -- Resonance Oscillations in Granular Gases -- Granular Astrophysics -- Dynamical Evolution of Viscous Discs. Astrophysical Applications to the Formation of Planetary Systems and to the Confinement of Planetary Rings and Arcs -- Numerical Simulations of the Collisional Dynamics of Planetary Rings -- Formation of Narrow Ringlets in Saturn’s Rings -- Granular Viscosity, Planetary Rings and Inelastic Particle Collisions -- Towards Dense Granular Systems -- The Equation of State for Almost Elastic, Smooth, Polydisperse Granular Gases for Arbitrary Density -- Experimental Observations of Non-equilibrium Distributions and Transitions in a 2D Granular Gas -- Effect of Excluded Volume and Anisotropy on Granular Statistics: “Fermi Statistics” and Condensation -- How Much Can We Simplify a System of Grains?.
Record Nr. UNINA-9910139821703321
Berlin, Heidelberg : , : Springer Berlin Heidelberg : , : Imprint : Springer, , 2001
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
High enthalpy gas dynamics / / Ethirajan Rathakrishnan
High enthalpy gas dynamics / / Ethirajan Rathakrishnan
Autore Rathakrishnan Ethirajan
Pubbl/distr/stampa Hoboken, New Jersey : , : John Wiley & Sons Inc., , 2015
Descrizione fisica 1 online resource (781 p.)
Disciplina 533/.2
Soggetto topico Gas dynamics
Gases - Thermal properties
Enthalpy
ISBN 1-118-82191-2
1-119-11312-1
1-118-82190-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright; Dedication; About the Author; Preface; Chapter 1: Basic Facts; 1.1 Introduction; 1.2 Enthalpy versus Internal Energy; 1.3 Gas Dynamics of Perfect Gases; 1.4 Compressible Flow; 1.5 Compressibility; 1.6 Supersonic Flow; 1.7 Speed of Sound; 1.8 Temperature Rise; 1.9 Mach Angle; 1.10 Summary; Exercise Problems; References; Chapter 2: Thermodynamics of Fluid Flow; 2.1 Introduction; 2.2 First Law of Thermodynamics; 2.3 The Second Law of Thermodynamics (Entropy Equation); 2.4 Thermal and Calorical Properties; 2.5 The Perfect Gas; 2.6 Summary; Exercise Problems
ReferencesChapter 3: Wave Propagation; 3.1 Introduction; 3.2 Velocity of Sound; 3.3 Subsonic and Supersonic Flows; 3.4 Similarity Parameters; 3.5 Continuum Hypothesis; 3.6 Compressible Flow Regimes; 3.7 Summary; Exercise Problems; References; Chapter 4: High-Temperature Flows; 4.1 Introduction; 4.2 Importance of High-Enthalpy Flows; 4.3 Nature of High-Enthalpy Flows; 4.4 Most Probable Macrostate; 4.5 Counting the Number of Microstates for a given Macrostate; 4.6 Evaluation of Thermodynamic Properties; 4.7 Evaluation of Partition Function in terms of
4.8 High-Temperature Thermodynamic Properties of a Single-Species Gas4.9 Equilibrium Properties of High-Temperature Air; 4.10 Kinetic Theory of Gases; 4.11 Collision Frequency and Mean Free Path; 4.12 Velocity and Speed Distribution Functions; 4.13 Inviscid High-Temperature Equilibrium Flows; 4.14 Governing Equations; 4.15 Normal and Oblique Shocks; 4.16 Oblique Shock Wave in an Equilibrium Gas; 4.17 Equilibrium Quasi-One-Dimensional Nozzle Flows; 4.18 Frozen and Equilibrium Flows; 4.19 Equilibrium and Frozen Specific Heats; 4.20 Inviscid High-Temperature Nonequilibrium Flows
4.21 Nonequilibrium Normal Shock and Oblique Shock Flows4.22 Nonequilibrium Flow over Blunt-Nosed Bodies; 4.23 Transport Properties in High-Temperature Gases; 4.24 Summary; Exercise Problems; References; Chapter 5: Hypersonic Flows; 5.1 Introduction; 5.2 Newtonian Flow Model; 5.3 Mach Number Independence Principle; 5.4 Hypersonic Flow Characteristics; 5.5 Governing Equations; 5.6 Dependent Variables; 5.7 Transport Properties; 5.8 Continuity Equation; 5.9 Momentum Equation; 5.10 Energy Equation; 5.11 General Form of the Equations of Motion; 5.12 Experimental Measurements of Hypersonic Flows
5.13 Measurements of Hypersonic Flows5.14 Summary; Exercise Problems; References; Chapter 6: Aerothermodynamics; 6.1 Introduction; 6.2 Empirical Correlations; 6.3 Viscous Interaction with External Flow; 6.4 CFD for Hypersonic Flows; 6.5 Computation Based on a Two-layer Flow Model; 6.6 Calibration and Validation of the CFD Codes; 6.7 Basic CFD-Intuitive Understanding; 6.8 Summary; Exercise Problem; References; Chapter 7: High-Enthalpy Facilities; 7.1 Introduction; 7.2 Hotshot Tunnels; 7.3 Plasma Arc Tunnels; 7.4 Shock Tubes; 7.5 Shock Tunnels; 7.6 Gun Tunnels
7.7 Some of the Working Facilities
Record Nr. UNINA-9910132295303321
Rathakrishnan Ethirajan  
Hoboken, New Jersey : , : John Wiley & Sons Inc., , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
High enthalpy gas dynamics / / Ethirajan Rathakrishnan
High enthalpy gas dynamics / / Ethirajan Rathakrishnan
Autore Rathakrishnan Ethirajan
Pubbl/distr/stampa Hoboken, New Jersey : , : John Wiley & Sons Inc., , 2015
Descrizione fisica 1 online resource (781 p.)
Disciplina 533/.2
Soggetto topico Gas dynamics
Gases - Thermal properties
Enthalpy
ISBN 1-118-82191-2
1-119-11312-1
1-118-82190-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright; Dedication; About the Author; Preface; Chapter 1: Basic Facts; 1.1 Introduction; 1.2 Enthalpy versus Internal Energy; 1.3 Gas Dynamics of Perfect Gases; 1.4 Compressible Flow; 1.5 Compressibility; 1.6 Supersonic Flow; 1.7 Speed of Sound; 1.8 Temperature Rise; 1.9 Mach Angle; 1.10 Summary; Exercise Problems; References; Chapter 2: Thermodynamics of Fluid Flow; 2.1 Introduction; 2.2 First Law of Thermodynamics; 2.3 The Second Law of Thermodynamics (Entropy Equation); 2.4 Thermal and Calorical Properties; 2.5 The Perfect Gas; 2.6 Summary; Exercise Problems
ReferencesChapter 3: Wave Propagation; 3.1 Introduction; 3.2 Velocity of Sound; 3.3 Subsonic and Supersonic Flows; 3.4 Similarity Parameters; 3.5 Continuum Hypothesis; 3.6 Compressible Flow Regimes; 3.7 Summary; Exercise Problems; References; Chapter 4: High-Temperature Flows; 4.1 Introduction; 4.2 Importance of High-Enthalpy Flows; 4.3 Nature of High-Enthalpy Flows; 4.4 Most Probable Macrostate; 4.5 Counting the Number of Microstates for a given Macrostate; 4.6 Evaluation of Thermodynamic Properties; 4.7 Evaluation of Partition Function in terms of
4.8 High-Temperature Thermodynamic Properties of a Single-Species Gas4.9 Equilibrium Properties of High-Temperature Air; 4.10 Kinetic Theory of Gases; 4.11 Collision Frequency and Mean Free Path; 4.12 Velocity and Speed Distribution Functions; 4.13 Inviscid High-Temperature Equilibrium Flows; 4.14 Governing Equations; 4.15 Normal and Oblique Shocks; 4.16 Oblique Shock Wave in an Equilibrium Gas; 4.17 Equilibrium Quasi-One-Dimensional Nozzle Flows; 4.18 Frozen and Equilibrium Flows; 4.19 Equilibrium and Frozen Specific Heats; 4.20 Inviscid High-Temperature Nonequilibrium Flows
4.21 Nonequilibrium Normal Shock and Oblique Shock Flows4.22 Nonequilibrium Flow over Blunt-Nosed Bodies; 4.23 Transport Properties in High-Temperature Gases; 4.24 Summary; Exercise Problems; References; Chapter 5: Hypersonic Flows; 5.1 Introduction; 5.2 Newtonian Flow Model; 5.3 Mach Number Independence Principle; 5.4 Hypersonic Flow Characteristics; 5.5 Governing Equations; 5.6 Dependent Variables; 5.7 Transport Properties; 5.8 Continuity Equation; 5.9 Momentum Equation; 5.10 Energy Equation; 5.11 General Form of the Equations of Motion; 5.12 Experimental Measurements of Hypersonic Flows
5.13 Measurements of Hypersonic Flows5.14 Summary; Exercise Problems; References; Chapter 6: Aerothermodynamics; 6.1 Introduction; 6.2 Empirical Correlations; 6.3 Viscous Interaction with External Flow; 6.4 CFD for Hypersonic Flows; 6.5 Computation Based on a Two-layer Flow Model; 6.6 Calibration and Validation of the CFD Codes; 6.7 Basic CFD-Intuitive Understanding; 6.8 Summary; Exercise Problem; References; Chapter 7: High-Enthalpy Facilities; 7.1 Introduction; 7.2 Hotshot Tunnels; 7.3 Plasma Arc Tunnels; 7.4 Shock Tubes; 7.5 Shock Tunnels; 7.6 Gun Tunnels
7.7 Some of the Working Facilities
Record Nr. UNINA-9910807756403321
Rathakrishnan Ethirajan  
Hoboken, New Jersey : , : John Wiley & Sons Inc., , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Introduction to molecular beams gas dynamics [[electronic resource] /] / Giovanni Sanna, Giuseppe Tomassetti
Introduction to molecular beams gas dynamics [[electronic resource] /] / Giovanni Sanna, Giuseppe Tomassetti
Autore Sanna Giovanni
Pubbl/distr/stampa London, : Imperial College Press
Descrizione fisica 1 online resource (402 p.)
Disciplina 533.275
533/.2
Altri autori (Persone) TomassettiGiuseppe
Soggetto topico Gas dynamics
Molecular beams
Soggetto genere / forma Electronic books.
ISBN 1-281-86701-2
9786611867010
1-86094-740-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preface; CONTENTS; CHAPTER 1 Gas Properties; CHAPTER 2 The Non-Equilibrium Equations and the Relaxation of the Internal Degrees of Freedom; CHAPTER 3 The Fundamental Equations of Gas Dynamics; CHAPTER 4 Isoentropic Flow. Characteristic Lines; CHAPTER 5 The Method of Characteristics; CHAPTER 6 The Shock Waves; CHAPTER 7 The Flow in Nozzles and Jets; CHAPTER 8 The Supersonic Free Jet; CHAPTER 9 Application of the Boltzmann Equation to a Jet of Monatomic Gas; CHAPTER 10 Characterisation of a Particle Source and Extraction of the Molecular Beam
CHAPTER 11 The Condensation in a Supersonic Free JetCHAPTER 12 Some Different Topics; Appendix A.1 Different Forms of Eq. (1.2.2); Appendix A.2 Intermolecular Potential Energy; Appendix A.3 Molecular Energy Levels; Appendix B.1 Deduction of Eqs. (2.5.8; 9; 10); Appendix C.1 Deduction of Eqs. (3.9.10; 13); Appendix C.2 Alternative Deduction of the Bernoulli Equation; Appendix D.1 Use of the Prandtl-Meyer Function in the Method of Characteristics; Appendix D.2 Planar Flow Classification; Appendix D.3 Characteristic Lines and Weak Discontinuities; Appendix E.1 Spherical Symmetry Source
Appendix E.2 A New Determination of the Flow FieldAppendix E.3 Deduction of Eqs. (8.5.1; 2); Appendix F.1 Deduction of Eqs. (9.2.9; 10; 11; 12); Appendix F.2 Deduction of Eqs. (9.3.5; 6); Appendix F.3 Deduction of Eq. (9.3.14); Appendix G.1 Calculation of the Integral /1 and /2 in Eqs. (12.4.7; 14); Index
Record Nr. UNINA-9910451072503321
Sanna Giovanni  
London, : Imperial College Press
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Introduction to molecular beams gas dynamics [[electronic resource] /] / Giovanni Sanna, Giuseppe Tomassetti
Introduction to molecular beams gas dynamics [[electronic resource] /] / Giovanni Sanna, Giuseppe Tomassetti
Autore Sanna Giovanni
Pubbl/distr/stampa London, : Imperial College Press
Descrizione fisica 1 online resource (402 p.)
Disciplina 533.275
533/.2
Altri autori (Persone) TomassettiGiuseppe
Soggetto topico Gas dynamics
Molecular beams
ISBN 1-281-86701-2
9786611867010
1-86094-740-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preface; CONTENTS; CHAPTER 1 Gas Properties; CHAPTER 2 The Non-Equilibrium Equations and the Relaxation of the Internal Degrees of Freedom; CHAPTER 3 The Fundamental Equations of Gas Dynamics; CHAPTER 4 Isoentropic Flow. Characteristic Lines; CHAPTER 5 The Method of Characteristics; CHAPTER 6 The Shock Waves; CHAPTER 7 The Flow in Nozzles and Jets; CHAPTER 8 The Supersonic Free Jet; CHAPTER 9 Application of the Boltzmann Equation to a Jet of Monatomic Gas; CHAPTER 10 Characterisation of a Particle Source and Extraction of the Molecular Beam
CHAPTER 11 The Condensation in a Supersonic Free JetCHAPTER 12 Some Different Topics; Appendix A.1 Different Forms of Eq. (1.2.2); Appendix A.2 Intermolecular Potential Energy; Appendix A.3 Molecular Energy Levels; Appendix B.1 Deduction of Eqs. (2.5.8; 9; 10); Appendix C.1 Deduction of Eqs. (3.9.10; 13); Appendix C.2 Alternative Deduction of the Bernoulli Equation; Appendix D.1 Use of the Prandtl-Meyer Function in the Method of Characteristics; Appendix D.2 Planar Flow Classification; Appendix D.3 Characteristic Lines and Weak Discontinuities; Appendix E.1 Spherical Symmetry Source
Appendix E.2 A New Determination of the Flow FieldAppendix E.3 Deduction of Eqs. (8.5.1; 2); Appendix F.1 Deduction of Eqs. (9.2.9; 10; 11; 12); Appendix F.2 Deduction of Eqs. (9.3.5; 6); Appendix F.3 Deduction of Eq. (9.3.14); Appendix G.1 Calculation of the Integral /1 and /2 in Eqs. (12.4.7; 14); Index
Record Nr. UNINA-9910784016803321
Sanna Giovanni  
London, : Imperial College Press
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Molecular gas dynamics and the direct simulation of gas flows / / G.A. Bird [[electronic resource]]
Molecular gas dynamics and the direct simulation of gas flows / / G.A. Bird [[electronic resource]]
Autore Bird G. A.
Pubbl/distr/stampa Oxford : , : Clarendon, , 2023
Descrizione fisica 1 online resource (xvii, 458 p. ) : ill. (some col.) ; + 1 computer disk (3 1/2 in.)
Disciplina 533/.2
Collana Oxford scholarship online
Oxford engineering science series
Soggetto topico Gas dynamics
Molecular dynamics
Gas flow - Mathematical models
ISBN 1-383-02891-5
1-61583-757-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto The molecular model -- Binary elastic collisions -- Basic kinetic theory -- Equilibrium gas properties -- Inelastic collisions and surface interactions -- Chemical reactions and thermal radiation -- Collisionless flows -- Analytical methods for transition regime flows -- Numerical methods for transition regime flows -- General issues related to direct simulations -- DSMC procedures in a homogeneous gas -- One-dimensional steady flows -- One-dimensional unsteady flows -- Two-dimensional flows -- Axially symmetric flows -- Three-dimensional flows -- Appendix A. Representative gas properties -- Appendix B. Probability functions and related integrals -- Appendix C. Sampling from a prescribed distribution -- Appendix D. Listing of program FMF. FOR -- Appendix E. Numerical artefacts -- Appendix F. Summary of the DSMC demonstration programs -- Appendix G. Listing of program DSMCOS. FOR.
Record Nr. UNINA-9911006552403321
Bird G. A.  
Oxford : , : Clarendon, , 2023
Materiale a stampa
Lo trovi qui: Univ. Federico II
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