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High-Resolution Methods for Incompressible and Low-Speed Flows - D. Drikakis
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
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D. Drikakis:
High-Resolution Methods for Incompressible and Low-Speed Flows - neues Buch

ISBN: 9783540264545

ID: 9783540264545

The study of incompressible ows is vital to many areas of science and te- nology. This includes most of the uid dynamics that one nds in everyday life from the ow of air in a room to most weather phenomena. Inundertakingthesimulationofincompressible uid ows,oneoftentakes many issues for granted. As these ows become more realistic, the problems encountered become more vexing from a computational point-of-view. These range from the benign to the profound. At once, one must contend with the basic character of incompressible ows where sound waves have been analytically removed from the ow. As a consequence vortical ows have been analytically preconditioned, but the ow has a certain non-physical character (sound waves of in nite velocity). At low speeds the ow will be deterministic and ordered, i.e., laminar. Laminar ows are governed by a balance between the inertial and viscous forces in the ow that provides the stability. Flows are often characterized by a dimensionless number known as the Reynolds number, which is the ratio of inertial to viscous forces in a ow. Laminar ows correspond to smaller Reynolds numbers. Even though laminar ows are organized in an orderly manner, the ows may exhibit instabilities and bifurcation phenomena which may eventually lead to transition and turbulence. Numerical modelling of suchphenomenarequireshighaccuracyandmostimportantlytogaingreater insight into the relationship of the numerical methods with the ow physics. High-Resolution Methods for Incompressible and Low-Speed Flows: The study of incompressible ows is vital to many areas of science and te- nology. This includes most of the uid dynamics that one nds in everyday life from the ow of air in a room to most weather phenomena. Inundertakingthesimulationofincompressible uid ows,oneoftentakes many issues for granted. As these ows become more realistic, the problems encountered become more vexing from a computational point-of-view. These range from the benign to the profound. At once, one must contend with the basic character of incompressible ows where sound waves have been analytically removed from the ow. As a consequence vortical ows have been analytically preconditioned, but the ow has a certain non-physical character (sound waves of in nite velocity). At low speeds the ow will be deterministic and ordered, i.e., laminar. Laminar ows are governed by a balance between the inertial and viscous forces in the ow that provides the stability. Flows are often characterized by a dimensionless number known as the Reynolds number, which is the ratio of inertial to viscous forces in a ow. Laminar ows correspond to smaller Reynolds numbers. Even though laminar ows are organized in an orderly manner, the ows may exhibit instabilities and bifurcation phenomena which may eventually lead to transition and turbulence. Numerical modelling of suchphenomenarequireshighaccuracyandmostimportantlytogaingreater insight into the relationship of the numerical methods with the ow physics. High-resolution Incompressible Low-speed Non-oscillatory Turbulence computational fluid dynamics fluid dynamics C Computational Science and Engineering Fluid- and Aerodynamics Acoustics Computational Intelligence Engineering Fluid Dynamics En, Springer Berlin

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High-Resolution Methods for Incompressible and Low-Speed Flows - Dimitris Drikakis
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
Dimitris Drikakis:
High-Resolution Methods for Incompressible and Low-Speed Flows - neues Buch

ISBN: 9783540264545

ID: 9783540264545

The study of incompressible ows is vital to many areas of science and te- nology. This includes most of the uid dynamics that one nds in everyday life from the ow of air in a room to most weather phenomena. Inundertakingthesimulationofincompressible uid ows,oneoftentakes many issues for granted. As these ows become more realistic, the problems encountered become more vexing from a computational point-of-view. These range from the benign to the profound. At once, one must contend with the basic character of incompressible ows where sound waves have been analytically removed from the ow. As a consequence vortical ows have been analytically preconditioned, but the ow has a certain non-physical character (sound waves of in nite velocity). At low speeds the ow will be deterministic and ordered, i.e., laminar. Laminar ows are governed by a balance between the inertial and viscous forces in the ow that provides the stability. Flows are often characterized by a dimensionless number known as the Reynolds number, which is the ratio of inertial to viscous forces in a ow. Laminar ows correspond to smaller Reynolds numbers. Even though laminar ows are organized in an orderly manner, the ows may exhibit instabilities and bifurcation phenomena which may eventually lead to transition and turbulence. Numerical modelling of suchphenomenarequireshighaccuracyandmostimportantlytogaingreater insight into the relationship of the numerical methods with the ow physics. High-Resolution Methods for Incompressible and Low-Speed Flows: The study of incompressible ows is vital to many areas of science and te- nology. This includes most of the uid dynamics that one nds in everyday life from the ow of air in a room to most weather phenomena. Inundertakingthesimulationofincompressible uid ows,oneoftentakes many issues for granted. As these ows become more realistic, the problems encountered become more vexing from a computational point-of-view. These range from the benign to the profound. At once, one must contend with the basic character of incompressible ows where sound waves have been analytically removed from the ow. As a consequence vortical ows have been analytically preconditioned, but the ow has a certain non-physical character (sound waves of in nite velocity). At low speeds the ow will be deterministic and ordered, i.e., laminar. Laminar ows are governed by a balance between the inertial and viscous forces in the ow that provides the stability. Flows are often characterized by a dimensionless number known as the Reynolds number, which is the ratio of inertial to viscous forces in a ow. Laminar ows correspond to smaller Reynolds numbers. Even though laminar ows are organized in an orderly manner, the ows may exhibit instabilities and bifurcation phenomena which may eventually lead to transition and turbulence. Numerical modelling of suchphenomenarequireshighaccuracyandmostimportantlytogaingreater insight into the relationship of the numerical methods with the ow physics., Springer-Verlag Gmbh

Neues Buch Rheinberg-Buch.de
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High-Resolution Methods for Incompressible and Low-Speed Flows als eBook Download von D. Drikakis, W. Rider - D. Drikakis, W. Rider
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D. Drikakis, W. Rider:
High-Resolution Methods for Incompressible and Low-Speed Flows als eBook Download von D. Drikakis, W. Rider - neues Buch

2005, ISBN: 9783540264545

ID: 31256574

High-Resolution Methods for Incompressible and Low-Speed Flows:Computational Fluid and Solid Mechanics. 2005. Auflage D. Drikakis, W. Rider High-Resolution Methods for Incompressible and Low-Speed Flows:Computational Fluid and Solid Mechanics. 2005. Auflage D. Drikakis, W. Rider eBooks > Sachthemen & Ratgeber > Computer & Internet, Springer Berlin Heidelberg

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High-Resolution Methods for Incompressible and Low-Speed Flows - D. Drikakis, W. Rider
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
D. Drikakis, W. Rider:
High-Resolution Methods for Incompressible and Low-Speed Flows - neues Buch

2005, ISBN: 9783540264545

ID: 31256574

High-Resolution Methods for Incompressible and Low-Speed Flows:Computational Fluid and Solid Mechanics. 2005. Auflage D. Drikakis, W. Rider High-Resolution Methods for Incompressible and Low-Speed Flows:Computational Fluid and Solid Mechanics. 2005. Auflage D. Drikakis, W. Rider eBooks > Sachthemen & Ratgeber > Computer & Internet, Springer Berlin Heidelberg

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High-Resolution Methods for Incompressible and Low-Speed Flows - D. Drikakis; W. Rider
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
D. Drikakis; W. Rider:
High-Resolution Methods for Incompressible and Low-Speed Flows - neues Buch

ISBN: 9783540264545

ID: 9783540264545

Physics; Acoustics; Engineering Fluid Dynamics; Fluid- and Aerodynamics; Computational Intelligence; Computational Science and Engineering High-resolution, Incompressible, Low-speed, Non-oscillatory, Turbulence, computational fluid dynamics, fluid dynamics Books eBook, Springer Science+Business Media

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