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Interface and Transport Dynamics: Computational Modelling

Interface and Transport Dynamics: Computational Modelling

Hardcover

Series: Lecture Notes in Computational Science and Engineering, Book 32

General MathematicsPhysics

ISBN10: 3540403671
ISBN13: 9783540403678
Publisher: Springer
Published: Sep 3 2003
Pages: 437
Weight: 1.71
Height: 1.00 Width: 6.00 Depth: 9.00
Language: English
The workshop on computational physics of transport and interfacial dynam- ics was held in Dresden, Germany from February 25 to March 8,2002. The Max Planck Institute for the Physics of Complex Systems has sponsored the workshop and the preliminary lecture-based seminar. The workshop has closely pursued the recent progress of research in com- putational physics and materials science, particularly in modelling both traf- fic fiow phenomena and complex multi-scale solidification. These branches of science have become topics of considerable diversity linking disciplines as different as physics, mathematical and computational modelling, nonlinear dynamics, materials sciences, statistical mechanics and foundry technique. The international workshop brought together experts from different fields in order to enhance the exchange of knowledge, to assess common interests and to provide closer cooperation between different communities of researchers. The workshop intended to create a comprehensive and coherent image of the current research status and to formulate various possible perspectives for joint future activities. Special emphases laid on exchanging experiences concerning numerical tools and on the bridging of the scales as necessary in a variety of scientific and engineering applications. An interesting possibility along this line was the coupling of different computational approaches leading to hybrid simulations. In this sense, we explicitly addressed researchers working with different numerical schemes as diverse as cellular automata, coupled maps, fi- nite difference and finite element algorithms for partial differential equations (e. g. phase-field computations).

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