Clément Cancès, Pascal Omnes:
Finite Volumes for Complex Applications VIII - Methods and Theoretical Aspects - FVCA 8, Lille, France, June 2017 - neues Buch
2017, ISBN: 8c736d9cacd018bfa87f7a109af80ec2
This first volume of the proceedings of the 8th conference on Finite Volumes for Complex Applications (Lille, June 2017) covers various topics including convergence and stability analysis… Mehr…
This first volume of the proceedings of the 8th conference on Finite Volumes for Complex Applications (Lille, June 2017) covers various topics including convergence and stability analysis, as well as investigations of these methods from the point of view of compatibility with physical principles. It collects together the focused invited papers comparing advanced numerical methods for Stokes and Navier-Stokes equations on a benchmark, as well as reviewed contributions from internationally leading researchers in the field of analysis of finite volume and related methods, offering a comprehensive overview of the state of the art in the field. The finite volume method in its various forms is a space discretization technique for partial differential equations based on the fundamental physical principle of conservation, and recent decades have brought significant advances in the theoretical understanding of the method. Many finite volume methods preserve further qualitative or asy mptotic properties, including maximum principles, dissipativity, monotone decay of free energy, and asymptotic stability. Due to these properties, finite volume methods belong to the wider class of compatible discretization methods, which preserve qualitative properties of continuous problems at the discrete level. This structural approach to the discretization of partial differential equations becomes particularly important for multiphysics and multiscale applications. The book is a valuable resource for researchers, PhD and masters level students in numerical analysis, scientific computing and related fields such as partial differential equations, as well as engineers working in numerical modeling and simulations. This first volume of the proceedings of the 8th conference on Finite Volumes for Complex Applications (Lille, June 2017) covers various topics including convergence and stability analysis, as well as investigations of these methods from the point of view of compatibility with physical principles. It collects together the focused invited papers comparing advanced numerical methods for Stokes and Navier-Stokes equations on a benchmark, as well as reviewed contributions from internationally leading Technik,Wissen > Physik, Springer-Verlag<
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Finite Volumes for Complex Applications VIII - Methods and Theoretical Aspects - FVCA 8, Lille, France, June 2017 - neues Buch
2017, ISBN: 8c736d9cacd018bfa87f7a109af80ec2
This first volume of the proceedings of the 8th conference on "Finite Volumes for Complex Applications" (Lille, June 2017) covers various topics including convergence and stability analys… Mehr…
This first volume of the proceedings of the 8th conference on "Finite Volumes for Complex Applications" (Lille, June 2017) covers various topics including convergence and stability analysis, as well as investigations of these methods from the point of view of compatibility with physical principles. It collects together the focused invited papers comparing advanced numerical methods for Stokes and Navier–Stokes equations on a benchmark, as well as reviewed contributions from internationally leading researchers in the field of analysis of finite volume and related methods, offering a comprehensive overview of the state of the art in the field. The finite volume method in its various forms is a space discretization technique for partial differential equations based on the fundamental physical principle of conservation, and recent decades have brought significant advances in the theoretical understanding of the method. Many finite volume methods preserve further qualitative or asymptotic properties, including maximum principles, dissipativity, monotone decay of free energy, and asymptotic stability. Due to these properties, finite volume methods belong to the wider class of compatible discretization methods, which preserve qualitative properties of continuous problems at the discrete level. This structural approach to the discretization of partial differential equations becomes particularly important for multiphysics and multiscale applications. The book is a valuable resource for researchers, PhD and master’s level students in numerical analysis, scientific computing and related fields such as partial differential equations, as well as engineers working in numerical modeling and simulations. Bücher & Hörbücher<
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Jürgen Fuhrmann, Mario Ohlberger & Christian Rohde:
Finite Volumes for Complex Applications VII-Methods and Theoretical Aspects - neues Buch
2014, ISBN: 8c736d9cacd018bfa87f7a109af80ec2
The first volume of the proceedings of the 7th conference on "Finite Volumes for Complex Applications" (Berlin, June 2014) covers topics that include convergence and stability analysis, a… Mehr…
The first volume of the proceedings of the 7th conference on "Finite Volumes for Complex Applications" (Berlin, June 2014) covers topics that include convergence and stability analysis, as well as investigations of these methods from the point of view of compatibility with physical principles. It collects together the focused invited papers, as well as the reviewed contributions from internationally leading researchers in the field of analysis of finite volume and related methods. Altogether, a rather comprehensive overview is given of the state of the art in the field. The finite volume method in its various forms is a space discretization technique for partial differential equations based on the fundamental physical principle of conservation. Recent decades have brought significant success in the theoretical understanding of the method. Many finite volume methods preserve further qualitative or asymptotic properties, including maximum principles, dissipativity, monotone decay of free energy, and asymptotic stability. Due to these properties, finite volume methods belong to the wider class of compatible discretization methods, which preserve qualitative properties of continuous problems at the discrete level. This structural approach to the discretization of partial differential equations becomes particularly important for multiphysics and multiscale applications.Researchers, PhD and masters level students in numerical analysis, scientific computing and related fields such as partial differential equations will find this volume useful, as will engineers working in numerical modeling and simulations., 2014<
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BEISPIEL
Fuhrmann, Jürgen; Ohlberger, Mario; Rohde, Christian (Eds.):
Finite Volumes for Complex Applications VII. Methods and Theoretical Aspects. FVCA 7, Berlin, June 2014. - gebunden oder broschiert
2014, ISBN: 8c736d9cacd018bfa87f7a109af80ec2
Cham, Springer International Publishing, 235 mm x 155 mm. XVIII, 468 p. Hardcover. Springer Proceedings in Mathematics & Statistics ; 77. Versand aus Deutschland / We dispatch from German… Mehr…
Cham, Springer International Publishing, 235 mm x 155 mm. XVIII, 468 p. Hardcover. Springer Proceedings in Mathematics & Statistics ; 77. Versand aus Deutschland / We dispatch from Germany via Air Mail. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. Mathematik 2014<
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Finite Volumes for Complex Applications VII-Methods and Theoretical Aspects - gebrauchtes Buch
ISBN: 8c736d9cacd018bfa87f7a109af80ec2
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