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ISBN 10: 0199681740 ISBN 13: 9780199681747
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Publicado por Oxford University Press, 2015
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Idioma: Inglés
Publicado por Oxford University Press, 2015
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Idioma: Inglés
Publicado por Oxford University Press, 2015
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Idioma: Inglés
Publicado por Oxford University Press, GB, 2015
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Añadir al carritoHardback. Condición: New. This is the second volume in a four-part series on fluid dynamics: Part 1. Classical Fluid Dynamics Part 2. Asymptotic Problems of Fluid Dynamics Part 3. Boundary Layers Part 4. Hydrodynamic Stability TheoryThe series is designed to give a comprehensive and coherent description of fluid dynamics, starting with chapters on classical theory suitable for an introductory undergraduate lecture course, and then progressing through more advanced material up to the level of modern research in the field.In Part 2 the reader is introduced to asymptotic methods, and their applications to fluid dynamics. Firstly, it discusses the mathematical aspects of the asymptotic theory. This is followed by an exposition of the results of inviscid flow theory, starting with subsonic flows past thin aerofoils. This includes unsteady flow theory and the analysis of separated flows. The authors then consider supersonic flow past a thin aerofoil, where the linear approximation leads to the Ackeret formula for the pressure. They also discuss the second order Buzemann approximation, and the flow behaviour at large distances from the aerofoil. Then the properties of transonic and hypersonic flows are examined in detail. Part 2 concludes with a discussion of viscous low-Reynolds-number flows. Two classical problems of the low-Reynolds-number flow theory are considered, the flow past a sphere and the flow past a circular cylinder. In both cases the flow analysis leads to a difficulty, known as Stokes paradox. The authors show that this paradox can be resolved using the formalism of matched asymptotic expansions.
Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoCondición: New. In this second volume the reader is introduced to asymptotic methods. These are now an inherent part of applied mathematics, and are used in different branches of physics, but it was fluid dynamics where asymptotic techniques we first introduced. Num Pages: 336 pages, 112 b/w illustrations. BIC Classification: PHDF; TGMF. Category: (UP) Postgraduate, Research & Scholarly; (UU) Undergraduate. Dimension: 185 x 255 x 20. Weight in Grams: 802. . 2015. 1st Edition. Hardcover. . . . .
Idioma: Inglés
Publicado por Oxford University Press, Oxford, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoHardcover. Condición: new. Hardcover. This is the second volume in a four-part series on fluid dynamics: Part 1. Classical Fluid Dynamics Part 2. Asymptotic Problems of Fluid Dynamics Part 3. Boundary Layers Part 4. Hydrodynamic Stability TheoryThe series is designed to give a comprehensive and coherent description of fluid dynamics, starting with chapters on classical theory suitable for an introductoryundergraduate lecture course, and then progressing through more advanced material up to the level of modern research in the field.In Part 2 the reader is introduced to asymptoticmethods, and their applications to fluid dynamics. Firstly, it discusses the mathematical aspects of the asymptotic theory. This is followed by an exposition of the results of inviscid flow theory, starting with subsonic flows past thin aerofoils. This includes unsteady flow theory and the analysis of separated flows. The authors then consider supersonic flow past a thin aerofoil, where the linear approximation leads to the Ackeret formula for the pressure. They also discuss the second orderBuzemann approximation, and the flow behaviour at large distances from the aerofoil. Then the properties of transonic and hypersonic flows are examined in detail. Part 2 concludes with a discussion ofviscous low-Reynolds-number flows. Two classical problems of the low-Reynolds-number flow theory are considered, the flow past a sphere and the flow past a circular cylinder. In both cases the flow analysis leads to a difficulty, known as Stokes paradox. The authors show that this paradox can be resolved using the formalism of matched asymptotic expansions. In this second volume the reader is introduced to asymptotic methods. These are now an inherent part of applied mathematics, and are used in different branches of physics, but it was fluid dynamics where asymptotic techniques were first introduced. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoCondición: New. In this second volume the reader is introduced to asymptotic methods. These are now an inherent part of applied mathematics, and are used in different branches of physics, but it was fluid dynamics where asymptotic techniques we first introduced. Num Pages: 336 pages, 112 b/w illustrations. BIC Classification: PHDF; TGMF. Category: (UP) Postgraduate, Research & Scholarly; (UU) Undergraduate. Dimension: 185 x 255 x 20. Weight in Grams: 802. . 2015. 1st Edition. Hardcover. . . . . Books ship from the US and Ireland.
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Añadir al carritoHardcover. Condición: Brand New. 1st edition. 320 pages. 8.00x5.00x1.00 inches. In Stock.
Idioma: Inglés
Publicado por Oxford University Press, GB, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
Librería: Rarewaves.com UK, London, Reino Unido
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Añadir al carritoHardback. Condición: New. This is the second volume in a four-part series on fluid dynamics: Part 1. Classical Fluid Dynamics Part 2. Asymptotic Problems of Fluid Dynamics Part 3. Boundary Layers Part 4. Hydrodynamic Stability TheoryThe series is designed to give a comprehensive and coherent description of fluid dynamics, starting with chapters on classical theory suitable for an introductory undergraduate lecture course, and then progressing through more advanced material up to the level of modern research in the field.In Part 2 the reader is introduced to asymptotic methods, and their applications to fluid dynamics. Firstly, it discusses the mathematical aspects of the asymptotic theory. This is followed by an exposition of the results of inviscid flow theory, starting with subsonic flows past thin aerofoils. This includes unsteady flow theory and the analysis of separated flows. The authors then consider supersonic flow past a thin aerofoil, where the linear approximation leads to the Ackeret formula for the pressure. They also discuss the second order Buzemann approximation, and the flow behaviour at large distances from the aerofoil. Then the properties of transonic and hypersonic flows are examined in detail. Part 2 concludes with a discussion of viscous low-Reynolds-number flows. Two classical problems of the low-Reynolds-number flow theory are considered, the flow past a sphere and the flow past a circular cylinder. In both cases the flow analysis leads to a difficulty, known as Stokes paradox. The authors show that this paradox can be resolved using the formalism of matched asymptotic expansions.
Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Publicado por Oxford University Press, 2015
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Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Idioma: Inglés
Publicado por Oxford University Press, Oxford, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoHardcover. Condición: new. Hardcover. This is the second volume in a four-part series on fluid dynamics: Part 1. Classical Fluid Dynamics Part 2. Asymptotic Problems of Fluid Dynamics Part 3. Boundary Layers Part 4. Hydrodynamic Stability TheoryThe series is designed to give a comprehensive and coherent description of fluid dynamics, starting with chapters on classical theory suitable for an introductoryundergraduate lecture course, and then progressing through more advanced material up to the level of modern research in the field.In Part 2 the reader is introduced to asymptoticmethods, and their applications to fluid dynamics. Firstly, it discusses the mathematical aspects of the asymptotic theory. This is followed by an exposition of the results of inviscid flow theory, starting with subsonic flows past thin aerofoils. This includes unsteady flow theory and the analysis of separated flows. The authors then consider supersonic flow past a thin aerofoil, where the linear approximation leads to the Ackeret formula for the pressure. They also discuss the second orderBuzemann approximation, and the flow behaviour at large distances from the aerofoil. Then the properties of transonic and hypersonic flows are examined in detail. Part 2 concludes with a discussion ofviscous low-Reynolds-number flows. Two classical problems of the low-Reynolds-number flow theory are considered, the flow past a sphere and the flow past a circular cylinder. In both cases the flow analysis leads to a difficulty, known as Stokes paradox. The authors show that this paradox can be resolved using the formalism of matched asymptotic expansions. In this second volume the reader is introduced to asymptotic methods. These are now an inherent part of applied mathematics, and are used in different branches of physics, but it was fluid dynamics where asymptotic techniques were first introduced. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoCondición: New. Print on Demand pp. 320 186 Illus.
Idioma: Inglés
Publicado por Oxford University Press, 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoCondición: New. PRINT ON DEMAND pp. 320.
Idioma: Inglés
Publicado por Oxford University Press (UK), 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoBuch. Condición: Neu. Fluid Dynamics | Ruban | Buch | Gebunden | Englisch | 2015 | Oxford University Press (UK) | EAN 9780199681747 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand.
Idioma: Inglés
Publicado por Oxford University Press (UK), 2015
ISBN 10: 0199681740 ISBN 13: 9780199681747
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Añadir al carritoBuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This is the second volume in a four-part series on fluid dynamics:Part 1. Classical Fluid DynamicsPart 2. Asymptotic Problems of Fluid DynamicsPart 3. Boundary LayersPart 4. Hydrodynamic Stability TheoryThe series is designed to give a comprehensive and coherent description of fluid dynamics, starting with chapters on classical theory suitable for an introductory undergraduate lecture course, and then progressing through more advanced material up to the level of modern research in the field.In Part 2 the reader is introduced to asymptotic methods, and their applications to fluid dynamics. Firstly, it discusses the mathematical aspects of the asymptotic theory. This is followed by an exposition of the results of inviscid flow theory, starting with subsonic flows past thin aerofoils. This includes unsteady flow theory and the analysis of separated flows. The authors then consider supersonic flow past a thin aerofoil, where the linear approximation leads to the Ackeret formula forthe pressure. They also discuss the second order Buzemann approximation, and the flow behaviour at large distances from the aerofoil. Then the properties of transonic and hypersonic flows are examined in detail. Part 2 concludes with a discussion of viscous low-Reynolds-number flows. Two classicalproblems of the low-Reynolds-number flow theory are considered, the flow past a sphere and the flow past a circular cylinder. In both cases the flow analysis leads to a difficulty, known as Stokes paradox. The authors show that this paradox can be resolved using the formalism of matched asymptotic expansions.