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Space-time conservation element and ...
~
Wen, Chih-Yung.
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Space-time conservation element and solution element method = advances and applications in engineering sciences /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Space-time conservation element and solution element method/ by Chih-Yung Wen, Yazhong Jiang, Lisong Shi.
Reminder of title:
advances and applications in engineering sciences /
Author:
Wen, Chih-Yung.
other author:
Jiang, Yazhong.
Published:
Singapore :Springer Nature Singapore : : 2023.,
Description:
ix, 139 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- Non-dissipative Core Scheme of CESE Method -- CESE Schemes with Numerical Dissipation -- Multi-Dimensional CESE Schemes on Cartesian Meshes -- CESE Schemes on Unstructured Meshes -- High-Order CESE Schemes -- Numerical Features of CESE Schemes -- Application: Hypersonic Aerodynamics -- Application: Compressible Multi-Fluid -- Other Applications -- Summary.
Contained By:
Springer Nature eBook
Subject:
Conservation laws (Mathematics) -
Online resource:
https://doi.org/10.1007/978-981-99-0876-9
ISBN:
9789819908769
Space-time conservation element and solution element method = advances and applications in engineering sciences /
Wen, Chih-Yung.
Space-time conservation element and solution element method
advances and applications in engineering sciences /[electronic resource] :by Chih-Yung Wen, Yazhong Jiang, Lisong Shi. - Singapore :Springer Nature Singapore :2023. - ix, 139 p. :ill. (some col.), digital ;24 cm. - Engineering applications of computational methods,v. 132662-3374 ;. - Engineering applications of computational methods ;v. 13..
Introduction -- Non-dissipative Core Scheme of CESE Method -- CESE Schemes with Numerical Dissipation -- Multi-Dimensional CESE Schemes on Cartesian Meshes -- CESE Schemes on Unstructured Meshes -- High-Order CESE Schemes -- Numerical Features of CESE Schemes -- Application: Hypersonic Aerodynamics -- Application: Compressible Multi-Fluid -- Other Applications -- Summary.
Open access.
This open access book introduces the fundamentals of the space-time conservation element and solution element (CESE) method, which is a novel numerical approach for solving equations of physical conservation laws. It highlights the recent progress to establish various improved CESE schemes and its engineering applications. With attractive accuracy, efficiency, and robustness, the CESE method is particularly suitable for solving time-dependent nonlinear hyperbolic systems involving dynamical evolutions of waves and discontinuities. Therefore, it has been applied to a wide spectrum of problems, e.g., aerodynamics, aeroacoustics, magnetohydrodynamics, multi-material flows, and detonations. This book contains algorithm analysis, numerical examples, as well as demonstration codes. This book is intended for graduate students and researchers who are interested in the fields such as computational fluid dynamics (CFD), mechanical engineering, and numerical computation.
ISBN: 9789819908769
Standard No.: 10.1007/978-981-99-0876-9doiSubjects--Topical Terms:
704425
Conservation laws (Mathematics)
LC Class. No.: QA377 / .W46 2023
Dewey Class. No.: 530.11
Space-time conservation element and solution element method = advances and applications in engineering sciences /
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Introduction -- Non-dissipative Core Scheme of CESE Method -- CESE Schemes with Numerical Dissipation -- Multi-Dimensional CESE Schemes on Cartesian Meshes -- CESE Schemes on Unstructured Meshes -- High-Order CESE Schemes -- Numerical Features of CESE Schemes -- Application: Hypersonic Aerodynamics -- Application: Compressible Multi-Fluid -- Other Applications -- Summary.
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This open access book introduces the fundamentals of the space-time conservation element and solution element (CESE) method, which is a novel numerical approach for solving equations of physical conservation laws. It highlights the recent progress to establish various improved CESE schemes and its engineering applications. With attractive accuracy, efficiency, and robustness, the CESE method is particularly suitable for solving time-dependent nonlinear hyperbolic systems involving dynamical evolutions of waves and discontinuities. Therefore, it has been applied to a wide spectrum of problems, e.g., aerodynamics, aeroacoustics, magnetohydrodynamics, multi-material flows, and detonations. This book contains algorithm analysis, numerical examples, as well as demonstration codes. This book is intended for graduate students and researchers who are interested in the fields such as computational fluid dynamics (CFD), mechanical engineering, and numerical computation.
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EB QA377 .W46 2023
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