K. W. Morton - Böcker
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712 kr
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This volume contains the proceedings of an international conference on Numerical Methods for Fluid Dynamics held at the University of Oxford in April 1995. Such conferences have been held at the Universities of Reading and Oxford since the early 1980s, under the auspices of the Institute for Computational Fluid Dynamics. The conferences have become regular and eagerly anticipated events in the CFD calendar, and attract a distinguished international group of speakers and delegates. The standard of papers is, as always, very high.The proceedings include work on all the latest current issues in CFD, and in particular are concerned with the analysis of CFD algorithms and their behaviour. The main themes of the present volume are algorithms and algorithmic needs arising from applications, Navier-Stokes on flexible grids, and environmental CFD. These proceedings begin with the 13 invited papers by eminent researchers, followed by the five papers by young researchers shortlisted for the Bill Morton prize (instigated at the conference), and finally include the 44 contributed papers.The distinguished group of invited speakers includes H Deconinck (VKI, Brussels), J C R Hunt (Meteorological Office), M A Leschziner (UMIST), D Mavriplis (ICASE). K W Morton (Oxford), K G Powell (Michigan), A Quarteroni (Milan), S Rill (Bremen), A N Staniforth (Quebec), N Stoufflet (Paris), J Thomas (NASA), N P Weatherill (Swansea), and P Wesseling (Delft).
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Leading authorities from industry and academia met at this established international conference. Their expert contributions cover an extensive range of topics in computational fluid dynamics, reveiwing recent advances in mathematical and computational fluid techniques for modelling fluid flows. For graduate students and researchers alike these proceedings provide a fully up-to-date account of the research currently underway in this central topic in fluid dynamics.
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This is the 2005 second edition of a highly successful and well-respected textbook on the numerical techniques used to solve partial differential equations arising from mathematical models in science, engineering and other fields. The authors maintain an emphasis on finite difference methods for simple but representative examples of parabolic, hyperbolic and elliptic equations from the first edition. However this is augmented by new sections on finite volume methods, modified equation analysis, symplectic integration schemes, convection-diffusion problems, multigrid, and conjugate gradient methods; and several sections, including that on the energy method of analysis, have been extensively rewritten to reflect modern developments. Already an excellent choice for students and teachers in mathematics, engineering and computer science departments, the revised text includes more latest theoretical and industrial developments.