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Simulation technology, and computational fluid dynamics (CFD) in particular, is essential in the search for solutions to the modern challenges faced by humanity. Revolutions in CFD over the last decade include the use of unstructured meshes, permitting the modeling of any 3D geometry. New frontiers point to mesh adaptation, allowing not only seamless meshing (for the engineer) but also simulation certification for safer products and risk prediction.
Mesh Adaptation for Computational Dynamics 2 is the second of two volumes and introduces topics including optimal control formulation, minimizing a goal function, and extending the steady algorithm to unsteady physics. Also covered are multi-rate strategies, steady inviscid flows in aeronautics and an extension to viscous flows.
This book will be useful to anybody interested in mesh adaptation pertaining to CFD, especially researchers, teachers and students.
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Seitenzahl: 287
Veröffentlichungsjahr: 2022
Alain DervieuxFrédéric AlauzetAdrien LoseilleBruno Koobus
First published 2022 in Great Britain and the United States by ISTE Ltd and John Wiley & Sons, Inc.
Apart from any fair dealing for the purposes of research or private study, or criticism or review, as permitted under the Copyright, Designs and Patents Act 1988, this publication may only be reproduced, stored or transmitted, in any form or by any means, with the prior permission in writing of the publishers, or in the case of reprographic reproduction in accordance with the terms and licenses issued by the CLA. Enquiries concerning reproduction outside these terms should be sent to the publishers at the undermentioned address:
ISTE Ltd
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© ISTE Ltd 2022The rights of Alain Dervieux, Frédéric Alauzet, Adrien Loseille and Bruno Koobus to be identified as the authors of this work have been asserted by them in accordance with the Copyright, Designs and Patents Act 1988.
Any opinions, findings, and conclusions or recommendations expressed in this material are those of the author(s), contributor(s) or editor(s) and do not necessarily reflect the views of ISTE Group.
Library of Congress Control Number: 2022934929
British Library Cataloguing-in-Publication DataA CIP record for this book is available from the British LibraryISBN 978-1-78630-832-0
This book presents many theoretical and numerical accomplishments performed in collaboration with the following researchers:
Rémi Abgrall, Olivier Allain, Francoise Angrand, Paul Arminjon, Nicolas Barral, Anca Belme, Fayssal Benkhaldoun, Francois Beux, Gautier Brèthes, Véronique Billey, Alexandre Carabias, Romuald Carpentier, Giles Carré, Yves Coudière, Francois Courty, Didier Chargy, Paul-Henri Cournède, Christophe Debiez, Jean-Antoine Desideri, Gérard Fernandez, Loula Fezoui, Jérôme Francescatto, Loic Frazza, Pascal Frey, Paul-Louis George, Aurélien Goudjo, Nicolas Gourvitch, Damien Guégan, Hervé Guillard, Emmanuelle Itam, Marie-Hélène Lallemand, Stéphane Lanteri, Bernard Larrouturou, Anne-Cécile Lesage, David Leservoisier, Francoise Loriot, Mark Loriot, Laurent Loth, Nathalie Marco, Katherine Mer, Victorien Menier, Bijan Mohammadi, Eric Morano, Boniface Nkonga, Géraldine Olivier, Bernadette Palmerio, Gilbert Rogé, Bastien Sauvage, Éric Schall, Hervé Stève, Bruno Stoufflet, Francois Thomasset, Julien Vanharen, Ganesan Vijayasundaram, Cécile Viozat and Stephen Wornom; we also want to apologize to the people we forgot to mention.
Also we want to acknowledge our friends of INRIA and Lemma, and in particular Charles Leca, Olivier Allain, Nathalie and Philippe Boh, for their support. INRIA provided excellent conditions for research and writing of this book to the first three authors. Lemma permitted a rapid industrialization of our mesh adaptation methods.
The first author thanks his advisers, Jean Céa, Roland Glowinski and many thanks also to Charbel Farhat, Jacques Périaux and Roger Peyret.
This study is supported by fp6 and fp7 European progams (AEROSHAPE, HISAC, NODESIM, UMRIDA). The authors and their coworkers were granted access to the HPC resources of CINES/IDRIS under allocations made by GENCI (Grand Equipement National de Calcul Intensif).