Team Gamma

Members
Overall Objectives
Scientific Foundations
Application Domains
Software
New Results
Contracts and Grants with Industry
Dissemination
Bibliography

Bibliography

Major publications by the team in recent years

[1]
H. Borouchaki, D. Chapelle, P. George, P. Laug, P. Frey.
Estimateurs d'erreur géométriques et adaptation de maillages, in: Traité en Mécanique et Ingénierie des Matériaux – Méthodes Numériques – Maillage et adaptation, Hermès, Paris, France, 2001, no 9, p. 279-310.
[2]
P. George, H. Borouchaki, P. Frey, P. Laug, E. Saltel.
Mesh Generation and Mesh Adaptivity: Theories and Techniques, in: Encyclopedia of Computational Mechanics, Volume 1: Fundamentals, E. Stein, R. de Borst, T. Hughes (editors), Wiley InterScience, 2004, no 17, p. 497–523, ISBN 0-470-84699-2, 2nd edition 2008.
[3]
J. Tomasi, B. Mennucci, P. Laug.
The modeling and simulation of the liquid phase, in: Handbook of Numerical Analysis, Volume X, Special Volume on Computational Chemistry, P. G. Ciarlet, C. L. Bris (editors), North-Holland, Amsterdam, Netherlands, 2003, p. 271-375, ISBN: 0-444-51248-9.

Publications of the year

Doctoral Dissertations and Habilitation Theses

[4]
E. Renaut.
Reconstruction de la topologie et génération de maillages de surfaces composées de carreaux paramétrés, Université de Technologie de Troyes, décembre 2009, Ph. D. Thesis.

Articles in International Peer-Reviewed Journal

[5]
F. Alauzet.
Size gradation control of anisotropic meshes, in: Finite Elements in Analysis and Design (FEAD), 2010, vol. 46, p. 181-202.
[6]
F. Alauzet, A. Loseille.
High Order Sonic Boom Modeling by Adaptive Methods, in: Journal of Computational Physics, 2010, vol. 229, p. 561-593.
[7]
A. Benabbou, H. Borouchaki, P. Laug, J. Lu.
Geometrical modeling of granular structures in two and three dimensions – Application to nanostructures, in: International Journal for Numerical Methods in Engineering (IJNME), 2009, vol. 80, no 4, p. 425-454
http://dx.doi.org/10.1002/nme.2644.
[8]
A. Benabbou, H. Borouchaki, P. Laug, J. Lu.
Numerical modeling of nanostructured materials, in: Finite Elements in Analysis and Design (FEAD), 2010, vol. 46, p. 165-180
http://dx.doi.org/10.1016/j.finel.2009.06.030.
[9]
Y. Bourgault, M. Picasso, F. Alauzet, A. Loseille.
On the use of anisotropic error estimators for the adaptative solution of 3-D inviscid compressible flows, in: Int. J. Numer. Meth. Fluids, 2009, vol. 59, p. 47-74.
[10]
P. Laug.
Some aspects of parametric surface meshing, in: Finite Elements in Analysis and Design (FEAD), 2010, vol. 46, p. 216-226
http://dx.doi.org/10.1016/j.finel.2009.06.015.
[11]
A. Loseille, A. Dervieux, F. Alauzet.
Fully anisotropic goal-oriented mesh adaptation for 3D steady Euler equations, in: Journal of Computational Physics, 2010, Accepted. doi:10.1016/j.jcp.2009.12.021.

Invited Conferences

[12]
P. Laug, A. Benabbou, H. Borouchaki, J. Lu.
Geometry definition and unstructured grid generation for simulating nanostructured materials, in: 11th International Society on Computing Grid Generation (ISGG) Conference, May 2009.

International Peer-Reviewed Conference/Proceedings

[13]
F. Alauzet, W. Hassan, M. Picasso.
Goal oriented, anisotropic, a posteriori error estimates for the Laplace equation, in: Proceedings of ENUMATH 2009, the 8th European Conference on Numerical Mathematics and Advanced Applications, Springer, 2009.
[14]
F. Alauzet, A. Loseille.
On the use of space filling curves for parallel anisotropic mesh adaptation, in: 18th International Meshing Roundtable, Springer, 2009, p. 337-357.
[15]
O. Allain, D. Guégan, F. Alauzet.
Studying the impact of unstructured mesh adaptation on free surface flow simulations, in: Proceedings of the ASME 28th International Conference on Ocean, Offshore and Arctic Engineering, 2009.
[16]
P. Laug, H. Borouchaki, E. Renaut.
CAD surface meshing using reparameterization, in: MASCOT09 International IMACS/ISGG Workshop, October 2009.
[17]
A. Loseille, F. Alauzet.
Optimal 3D highly anisotropic mesh adaptation based on the continuous mesh framework, in: 18th International Meshing Roundtable, Springer, 2009, p. 575-594.
[18]
L. Maréchal.
Advances in octree-based all-hexahedral mesh generation: handling sharp features, in: 18th International Meshing Roundtable (IMR) Conference, Oct 2009, 19 pages.
[19]
E. Renaut, H. Borouchaki, P. Laug.
Topological skeleton reconstruction for CAD surface mesh generation, in: 11th International Society on Computing Grid Generation (ISGG) Conference, May 2009, 12 pages.

Internal Reports

[20]
F. Alauzet, A. Loseille.
High Order Sonic Boom Modeling by Adaptive Methods, INRIA, 2009
http://hal.inria.fr/inria-00363206/en/, RR-6845.
[21]
F. Alauzet, A. Loseille.
Metrix User Guide. Error Estimates and Mesh Control for Anisotropic Mesh Adaptation, INRIA, 2009
http://hal.inria.fr/inria-00363007/en/, RT-0363.
[22]
F. Alauzet, M. Mehrenberger.
P1-conservative solution interpolation on unstructured triangular meshes, INRIA, 2009
http://hal.inria.fr/inria-00354509/en/, RR-6804.
[23]
A. Loseille, F. Alauzet.
Shrimp User Guide. A Fast Mesh Renumbering and Domain Partionning Method, INRIA, 2009
http://hal.inria.fr/inria-00362994/en/, RT-0362.
[24]
M. Picasso.
An adaptive finite element method for the wave equation based on anisotropic a posteriori error estimates in the L2(H1) norm, INRIA, 2009
http://hal.inria.fr/inria-00435786/en/, RR-7115.

Other Publications

[25]
A. Loseille, F. Alauzet.
Continuous Mesh Model and Well-Posed Continuous Interpolation Error Estimation, 2009
http://hal.inria.fr/inria-00370235/en/, RR-6846.

References in notes

[26]
J. D. Boissonnat, M. Yvinec.
Géométrie algorithmique, Ediscience, 1995.
[27]
P. G. Ciarlet.
Basic Error Estimates for Elliptic Problems, Ciarlet, P. G. and Lions, J. L., North Holland, 1991, vol. II.
[28]
P. Frey, P. George.
Maillages. Applications aux éléments finis, Hermès Science Publications, Paris, 1999.
[29]
P. George, H. Borouchaki.
Triangulation de Delaunay et maillage. Applications aux éléments finis, Hermès, 1997.
[30]
A. George.
Computer implementation of the finite element method, Dep. of Computer Science, Stanford, 1971, Ph. D. Thesis.
[31]
R. Lohner.
Progress in grid generation via the advancing front technique, in: Engineering with computers., 1996, vol. 12, p. 186-210.
[32]
F. Preparata, M. Shamos.
Computational geometry, an introduction, Springer-Verlag, 1985.
[33]
M. S. Shephard, M. K. Georges.
Automatic Three-Dimensional Mesh Generation by the Finite Octree Technique, in: Int. J. Numer. Methods Eng., 1991, vol. 32, no 4, p. 709-749.
[34]
R. Verfurth.
A review of a posteriori error estimation and adaptive refinement techniques, Wiley-Teubner, 1996.

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