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Wilkins, Mark L.:

Computer Simulation of Dynamic Phenomena - Paperback

2010, ISBN: 9783642083150

[ED: Softcover], [PU: Springer, Berlin], A description of computer programs for simulating phenomena in hydrodynamics, gas dynamics, and elastic plastic flow in one, two, and three dimens… More...

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Computer Simulation of Dynamic Phenomena - new book

ISBN: 9783642083150

This text describes computer programs for simulating phenomena in hydro­ dynamics, gas dynamics, and elastic plastic flow in one, two, and three dimen­ sions. Included in the tw… More...

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Wilkins, Mark L.:
Computer Simulation of Dynamic Phenomena - new book

2010

ISBN: 9783642083150

Springer-Verlag Berlin and Heidelberg GmbH & Co. K, Broché, Auflage: Softcover reprint of hardcover 1st ed. 1999, 246 Seiten, Publiziert: 2010-12-07T00:00:01Z, Produktgruppe: Livre, Herst… More...

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Wilkins, Mark L.:
Computer Simulation of Dynamic Phenomena - Paperback

2010, ISBN: 9783642083150

Paperback, New., 246 p. Scientific Computation . 4 Tables, black and white; XVI, 246 p. Intended for professional and scholarly audience., Berlin, [PU: Springer-Verlag Berlin and Heidelbe… More...

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Mark L. Wilkins:
Computer Simulation of Dynamic Phenomena (Scientific Computation) - Paperback

2010, ISBN: 3642083153

[EAN: 9783642083150], Nouveau livre, [SC: 36.2], [PU: Springer], Clean and crisp and new!, Books

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Details of the book
Computer Simulation of Dynamic Phenomena

A description of computer programs for simulating phenomena in hydrodynamics, gas dynamics, and elastic plastic flow in one, two, and three dimensions. The text covers Maxwell's equations, and thermal and radiation diffusion, while the numerical procedures described permit the exact conservation of physical properties in the solutions of the fundamental laws of mechanics. The author also treats materials, including the use of simulation programs to predict material behavior.

Details of the book - Computer Simulation of Dynamic Phenomena


EAN (ISBN-13): 9783642083150
ISBN (ISBN-10): 3642083153
Paperback
Publishing year: 2010
Publisher: Springer-Verlag Berlin and Heidelberg GmbH & Co. K
264 Pages
Weight: 0,404 kg
Language: eng/Englisch

Book in our database since 2011-10-03T22:59:46+01:00 (London)
Detail page last modified on 2023-07-26T15:00:52+01:00 (London)
ISBN/EAN: 9783642083150

ISBN - alternate spelling:
3-642-08315-3, 978-3-642-08315-0
Alternate spelling and related search-keywords:
Book author: wilkins, livermore


Information from Publisher

Author: Mark L. Wilkins
Title: Scientific Computation; Computer Simulation of Dynamic Phenomena
Publisher: Springer; Springer Berlin
246 Pages
Publishing year: 2010-12-07
Berlin; Heidelberg; DE
Printed / Made in
Language: English
197,99 € (DE)

BC; Hardcover, Softcover / Physik, Astronomie/Theoretische Physik; Mathematische Physik; Verstehen; Computer; Maxwell's equations; Simulation; behaviour of materials; computer simulation; detonation wawes; elastic-plastic flow; fluid mechanics; magnetohydrodynamics; mechanics; modeling; plastic waves; sliding surfaces; sound sliding interfaces; Theoretical, Mathematical and Computational Physics; Classical and Continuum Physics; Computer Modelling; Condensed Matter Physics; Mathematical and Computational Engineering Applications; Computational Science and Engineering; Klassische Mechanik; Computermodellierung und -simulation; Physik der kondensierten Materie (Flüssigkeits- und Festkörperphysik); Mathematik für Ingenieure; Numerische Mathematik; BB

Preferred finite difference schemes in one, two, and three space dimensions are described for solving the three fundamental equations of mechanics (conservation of mass, conservation of momentum, and conservation of energy). Models of the behavior of materials provide the closure to the three fundamentals equations for applications to problems in compressible fluid flow and solid mechanics. The use of Lagrange coordinates permits the history of mass elements to be followed where the integrated effects of plasticity and external loads change the material physical properties. Models of fracture, including size effects, are described. The detonation of explosives is modelled following the Chapman--Jouget theory with equations of state for the detonation products derived from experiments. An equation-of-state library for solids and explosives is presented with theoretical models that incorporate experimental data from the open literature. The versatility of the simulation programs is demonstrated by applications to the calculations of surface waves from an earthquake to the shock waves from supersonic flow and other examples.

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