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Computational Multiscale Modeling of Fluids and Solids: Theory and Applications

Autor Martin Oliver Steinhauser
en Limba Engleză Paperback – 19 oct 2010
The expanded 3rd edition of this established textbook offers an updated overview and review of the computational physics techniques used in materials modelling over different length and time scales. It describes in detail the theory and application of some of the most important methods used to simulate materials across the various levels of spatial and temporal resolution. Quantum mechanical methods such as the Hartree-Fock approximation for solving the Schrödinger equation at the smallest spatial resolution are discussed as well as the Molecular Dynamics and Monte-Carlo methods on the micro- and meso-scale up to macroscopic methods used predominantly in the Engineering world such as Finite Elements (FE) or Smoothed Particle Hydrodynamics (SPH).
Extensively updated throughout, this new edition includes additional sections on polymer theory, statistical physics and continuum theory, the latter being the basis of FE methods and SPH. Each chapter now first provides an overview ofthe key topics covered, with a new “key points” section at the end. The book is aimed at beginning or advanced graduate students who want to enter the field of computational science on multi-scales. It provides an in-depth overview of the basic physical, mathematical and numerical principles for modelling solids and fluids on the micro-, meso-, and macro-scale. With a set of exercises, selected solutions and several case studies, it is a suitable book for students in physics, engineering, and materials science, and a practical reference resource for those already using materials modelling and computational methods in their research.
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Specificații

ISBN-13: 9783642094408
ISBN-10: 3642094406
Pagini: 448
Ilustrații: XVIII, 428 p. 141 illus.
Dimensiuni: 155 x 235 x 24 mm
Greutate: 0.62 kg
Ediția:Softcover reprint of hardcover 1st ed. 2008
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Fundamentals.- Multiscale Computational Materials Science.- Mathematical and Physical Prerequisites.- Fundamentals of Numerical Simulation.- Computational Methods on Multiscales.- Computational Methods on Electronic/Atomistic Scale.- Computational Methods on Atomistic/Microscopic Scale.- Computational Methods on Mesoscopic/Macroscopic Scale.- Perspectives in Multiscale Materials Modeling.

Recenzii

From the reviews:
"This is an advanced mathematical treatise devoted to an overview of numerical computational methods and techniques for materials modeling on different length and time scales. Steinhauser … covers microscale, mesoscale, and macroscale of materials modeling in two parts and seven chapters. … The book includes several appendixes, with one that provides further reading and another that lists almost 500 references. … Summing Up: Recommended. Graduate students and researchers/faculty in mathematics and physics." (R. Darby, CHOICE, Vol. 45 (10), June, 2008)

Notă biografică

  1. Career to Date:
2003-present Senior scientist in the Department of Numerical Simulation
at the fraunhofer Ernst-Mach Institute (EMI)
Managing project leader of the project "MMM-Tools", (Multiscale Materials Modeling) in cooperation of 9 different Fraunhofer-Institutes in Germany (www.mmm-tools.de)
Advisor of Diploma and PhD students in Physics and Mathematics
2002-2003 Senior Computational Geneticist in the Department of Genetic Epidemiology at Lion Bioscience AG, Heidelberg, Germany
2001-2002 Manager at SAP Headquarters, Walldorf, Germany
2001 PhD in Physics
1998-2001 PhD Student of Prof. Kurt Kremer at the Max-Planck-Institute for Polymer Research, Mainz, Germany
Assistant teacher at the Univ. of Mainz, Germany
1998 Graduation in Physics with Honors at the University of Ulm, Germany
1997-1998 Diploma Student in the Department of Theoretical Physics at the University of Ulm, Germany
1995-1996 Graduate Exchange Student at the University of Massachusetts at Amherst, MA, U.S.A.
1993-1995 Assistant Teacher at the University of Ulm, Germany
1993 German "Vordiplom" in physics with honors
1991 Studies in physics

Textul de pe ultima copertă

The idea of the book is to provide a comprehensive overview of computational physics methods and techniques, that are used for materials modeling on different length and time scales. Each chapter first provides an overview of the physical basic principles which are the basis for the numerical and mathematical modeling on the respective length-scale.
The book includes the micro-scale, the meso-scale and the macro-scale. The chapters follow this classification. The book will explain in detail many tricks of the trade of some of the most important methods and techniques that are used to simulate materials on the perspective levels of spatial and temporal resolution. Case studies are occasionally included to further illustrate some methods or theoretical considerations. Example applications for all techniques are provided, some of which are from the author’s own contributions to some of the research areas. Methods are explained, if possible, on the basis of the original publications but also references to standard text books established in the various fields are mentioned.

Caracteristici

First book on methods and numerical techniques on multiscales in a concise way Recent applications Includes supplementary material: sn.pub/extras