Bibliography
Publications of the year
Doctoral Dissertations and Habilitation Theses
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1U. Bosi.
A unified spectral/hp element depth-integrated Boussinesq model for nonlinear wave-floating body interaction, Université de Bordeaux, June 2019.
https://tel.archives-ouvertes.fr/tel-02297587
Articles in International Peer-Reviewed Journals
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2L. Arpaia, M. Ricchiuto.
Well balanced residual distribution for the ALE spherical shallow water equations on moving adaptive meshes, in: Journal of Computational Physics, 2020, vol. 405, 109173 p. [ DOI : 10.1016/j.jcp.2019.109173 ]
https://hal.inria.fr/hal-02422335 -
3P. Bacigaluppi, M. Ricchiuto, P. Bonneton.
Implementation and Evaluation of Breaking Detection Criteria for a Hybrid Boussinesq Model, in: Water Waves, 2019, forthcoming.
https://hal.archives-ouvertes.fr/hal-02383888 -
4U. Bosi, A. P. Engsig-Karup, C. Eskilsson, M. Ricchiuto.
A spectral/hp element depth-integrated model for nonlinear wave-body interaction, in: Computer Methods in Applied Mechanics and Engineering, 2019, vol. 348, pp. 222-249. [ DOI : 10.1016/j.cma.2019.01.020 ]
https://hal.inria.fr/hal-02001091 -
5R. Chassagne, A. G. G. Filippini, M. Ricchiuto, P. Bonneton.
Dispersive and dispersive-like bores in channels with sloping banks, in: Journal of Fluid Mechanics, 2019, vol. 870, pp. 595-616. [ DOI : 10.1017/jfm.2019.287 ]
https://hal.inria.fr/hal-02129315 -
6A. Chertock, A. Kurganov, M. Ricchiuto, T. Wu.
Adaptive Moving Mesh Upwind Scheme for the Two-Species Chemotaxis Model, in: Computers and Mathematics with Applications, March 2019. [ DOI : 10.1016/j.camwa.2019.01.021 ]
https://hal.inria.fr/hal-02064581 -
7M. E. Hubbard, M. Ricchiuto, D. Sármány.
Space-time residual distribution on moving meshes, in: Computers and Mathematics with Applications, 2020. [ DOI : 10.1016/j.camwa.2019.09.019 ]
https://hal.inria.fr/hal-02310394 -
8H. Kalisch, M. Ricchiuto, P. Bonneton, M. Colin, P. Lubin.
Introduction to the Special Issue on Breaking Waves, in: European Journal of Mechanics - B/Fluids, 2019, vol. 73, pp. 1-5. [ DOI : 10.1016/j.euromechflu.2018.11.007 ]
https://hal.inria.fr/hal-02355203 -
9M. Kazolea, A. G. G. Filippini, M. Ricchiuto, S. Abadie, M. Martin Medina, D. Morichon, C. Journeau, R. Marcer, K. Pons, S. Le Roy, R. Pedreros, M. Rousseau.
Wave propagation, breaking, and overtopping on a 2D reef: A comparative evaluation of numerical codes for tsunami modelling, in: European Journal of Mechanics - B/Fluids, January 2019, vol. 73, pp. 122-131. [ DOI : 10.1016/j.euromechflu.2017.10.010 ]
https://hal.inria.fr/hal-01627758 -
10L. Nouveau, M. Ricchiuto, G. Scovazzi.
High-Order Gradients with the Shifted Boundary Method: An Embedded Enriched Mixed Formulation for Elliptic PDEs, in: Journal of Computational Physics, August 2019, 108898 p. [ DOI : 10.1016/j.jcp.2019.108898 ]
https://hal.inria.fr/hal-02269007 -
11G. Perrot, G. Couégnat, M. Ricchiuto, G. Vignoles.
Image-based Numerical Modeling of Self-Healing in a Ceramic-Matrix Minicomposite, in: Ceramics, May 2019, vol. 2, no 2, pp. 308-326. [ DOI : 10.3390/ceramics2020026 ]
https://hal.inria.fr/hal-02118786 -
12F. Sanson, J.-M. Bouilly, C. Bertorello, P. M. Congedo.
Breakup prediction under uncertainty: Application to upper stage controlled reentries from GTO orbit, in: Aerospace Science and Technology, January 2019. [ DOI : 10.1016/j.ast.2019.02.031 ]
https://hal.inria.fr/hal-02436222 -
13F. Sanson, C. Frueh.
Noise estimation and probability of detection in non-resolved images: application to space object observation, in: Advances in Space Research, 2019, vol. 64, no 7, pp. 1432-1444. [ DOI : 10.1016/j.asr.2019.07.003 ]
https://hal.archives-ouvertes.fr/hal-02392610
Invited Conferences
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14L. Cirrottola, A. Froehly, A. Guardone, G. Quaranta, B. Re, M. Ricchiuto.
R-adaptation for unsteady compressible flow simulations in three dimensions, in: ADMOS 2019 - International Conference on Adaptive Modeling and Simulation, El Campello (Alicante), Spain, May 2019.
https://hal.inria.fr/hal-02284746
International Conferences with Proceedings
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15M. Ciallella, M. Ricchiuto, R. Paciorri, A. Bonfiglioli.
Shifted shock-fitting: a new paradigm to handle shock waves for Euler equations, in: AIDAA 2019 - XXV International congress of the Italian association of aeronautics and astronautics, Rome, Italy, September 2019.
https://hal.inria.fr/hal-02292439 -
16V. Huck, F. Morency, H. Beaugendre.
Grid study for Delayed Detached Eddy-Simulation's grid of a pre-stalled wing, in: CASI Aero 2019 - Canadian Aeronautics and Space Institute's AERO 2019 Conference, Laval, Canada, June 2019.
https://hal.inria.fr/hal-02408993 -
17K. Ignatowicz, F. Morency, H. Beaugendre.
Numerical simulation of ice accretion using Messinger-based approach: effects of surface roughness, in: CASI Aero 2019 - Canadian Aeronautics and Space Institute's AERO 2019 Conference, Laval, Canada, May 2019.
https://hal.inria.fr/hal-02409011 -
18G. Tagawa, V. Huck, F. Morency, H. Beaugendre.
Shear-Layer Adapted DDES Analysis of 3D Stalled Flow Over an Iced Airfoil, in: AIAA Aviation 2019 Forum, Dallas, United States, American Institute of Aeronautics and Astronautics, June 2019. [ DOI : 10.2514/6.2019-3308 ]
https://hal.inria.fr/hal-02408946
Conferences without Proceedings
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19M. Lorini, M. Ricchiuto.
Adaptive discontinuous Galerkin immersed boundary method for compressible Navier–Stokes simulations, in: FEF2019 - 20th International Conference on Fluid Flow Problems, Chicago, United States, March 2019.
https://hal.inria.fr/hal-02294951 -
20V. Moureau, P. Bénard, G. Lartigue, R. Mercier, M. Cailler, A. Froehly, C. Dobrzynski.
Dynamic mesh adaptation for moving fronts and interfaces: application to the modeling of premixed flames and primary atomization, in: APS-DFD meeting, Seattle, WA, United States, November 2019.
https://hal.archives-ouvertes.fr/hal-02388149 -
21V. Moureau, P. Bénard, G. Lartigue, R. Mercier, M. Cailler, A. Froehly, C. Dobrzynski.
Dynamic mesh adaptation for moving fronts and interfaces: application to the modeling of premixed flames and primary atomization, in: Tetrahedron Workshop VI, Inria, Saclay, France, October 2019.
https://hal.archives-ouvertes.fr/hal-02388150
Internal Reports
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22L. Cirrottola, A. Froehly.
Parallel unstructured mesh adaptation using iterative remeshing and repartitioning, Inria Bordeaux, équipe CARDAMOM, November 2019, no RR-9307.
https://hal.inria.fr/hal-02386837
Other Publications
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23M. Colin, T. Higuchi.
Solitary wave solutions to the Isobe-Kakinuma model for water waves, November 2019, working paper or preprint.
https://hal.archives-ouvertes.fr/hal-02364653
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24R. Abgrall, H. Beaugendre, C. Dobrzynski.
An immersed boundary method using unstructured anisotropic mesh adaptation combined with level-sets and penalization techniques, in: Journal of Computational Physics, 2014, vol. 257, pp. 83-101.
https://hal.inria.fr/hal-00940302 -
25R. Abgrall, P. M. Congedo, G. Geraci.
A One-Time Truncate and Encode Multiresolution Stochastic Framework, in: Journal of Computational Physics, January 2014, vol. 257, pp. 19-56.
https://hal.inria.fr/hal-00851760 -
26R. Abgrall, C. Dobrzynski, A. Froehly.
A method for computing curved meshes via the linear elasticity analogy, application to fluid dynamics problems, in: International Journal for Numerical Methods in Fluids, 2014, vol. 76, no 4, pp. 246–266. -
27F. Alauzet, G. Olivier.
Extension of metric-based anisotropic mesh adaptation to time-dependent problems involving moving geometries, in: 49th AIAA Aerospace Sciences Meeting and Exhibit, Orlando (FL), 2011, AIAA paper 2011-0896. -
28L. Arpaia, A. Filippini, P. Bonneton, M. Ricchiuto.
Modelling analysis of tidal bore formation in convergent estuaries, in: 36th International Association for Hydro-Environnement Engineering and Research (IAHR) World Conference, The Hague, Netherlands, June 2015, submitted to Ocean Modelling.
https://hal.inria.fr/hal-01169254 -
29L. Arpaia, M. Ricchiuto.
r-adaptation for shallow water flows: conservation, well balancedness, efficiency, in: Computers & Fluids, 2017, vol. 160, pp. 175-203. -
30H. Beaugendre, F. Morency.
Development of a Second Generation In-flight Icing Simulation Code, in: Journal of Fluids Engineering, 2006, vol. 128. -
31H. Beaugendre, F. Morency, F. Gallizio, S. Laurens.
Computation of Ice Shedding Trajectories Using Cartesian Grids, Penalization, and Level Sets, in: Modelling and Simulation in Engineering, 2011, vol. 2011, pp. 1-15.
https://hal.inria.fr/hal-00653224 -
32S. Bellec, M. Colin, M. Ricchiuto.
Discrete asymptotic equations for long wave propagation, in: SIAM J. Numer. Anal., 2016, vol. 54, pp. 3280–3299. -
33L. Bennani, P. Villedieu, M. Salaun, P. Trontin.
Numerical simulation and modeling of ice shedding: Process initiation, in: Computers & Structures, 2014, vol. 142, pp. 15–27. -
34Y. Bourgault, H. Beaugendre, W. Habashi.
Development of a Shallow-Water icing model in FENSAP-ICE, in: Journal of Aircraft, 2000, vol. 37. -
35I. D. Boyd, G. Chen, G. V. Candler.
Predicting the Failure of the Continuum Fluid Equations in Transitional Hypersonic Flow, in: Physics of Fluids, 1995, vol. 7, pp. 210–219. -
36C. Bresten, S. Gottlieb, Z. Grant, D. Higgs, D. Ketcheson, A. Németh.
Strong Stability Preserving Multistep Runge-Kutta Methods, in: arXiv:1307.8058 [math.NA], 2014. -
37M. Brocchini.
A reasoned overview on Boussinesq-type models: the interplay between physics, mathematics and numerics, in: Proc. Royal Soc. A, 2014, vol. 469. -
38C. Budd, W. Huang, R. Russell.
Adaptivity with moving grids, in: Acta Numerica, 5 2009, vol. 18, pp. 111–241. -
39D. Caraeni, L. Fuchs.
Compact third-order multidimensional upwind discretization for steady and unsteady flow simulations, in: Computers and Fluids, 2005, vol. 34, no 4-5, pp. 419–441. -
40A. J. Christlieb, Y. Liu, Z. Xu.
High order operator splitting methods based on an integral deferred correction framework, in: Journal of Computational Physics, 2015, vol. 294, pp. 224–242. [ DOI : 10.1016/j.jcp.2015.03.032 ]
http://www.sciencedirect.com/science/article/pii/S0021999115001795 -
41C. Cluzel, E. Baranger, P. Ladevèze, A. Mouret.
Mechanical behaviour and lifetime modelling of self-healing ceramic-matrix composites subjected to thermomechanical loading in air, in: Composites Part A: Applied Science and Manufacturing, 2009, vol. 40, no 8, pp. 976–984. -
42C. F. D. Committee.
Guide for the Verification and Validation of Computational Fluid Dynamics Simulations, American Institute for Aeronautics and Astronautics, 1998. -
43P. M. Congedo, P. Cinnella, C. E. Corre.
Numerical investigation of dense-gas effects in turbomachinery, in: Computers and Fluids, 2011, vol. 49, no 1, pp. 290-301.
https://hal.inria.fr/inria-00601545 -
44P. M. Congedo, G. Quaranta, F. Fusi, A. Guardone.
Robust Optimization of a Helicopter Rotor Airfoil Using Multi-fidelity Approach, in: Advances in Evolutionary and Deterministic Methods for Design, Optimization and Control in Engineering and Sciences, Springer International Publishing, November 2014, vol. 36, pp. 385-399.
https://hal.inria.fr/hal-01092254 -
45P. Congedo, J. Witteveen, G. Iaccarino.
A simplex-based numerical framework for simple and efficient robust design optimization, in: Computational Optimization and Applications, 2013, vol. 56, pp. 231–251. -
46G. Couégnat, G. L. Vignoles, V. Drean, C. Mulat, W. Ros, G. Perrot, T. Haurat, J. El-Yagoubi, M. Eric, M. Ricchiuto, C. Germain, M. Cataldi.
Virtual material approach to self-healing CMCs, in: 4th European Conference for Aerospace Sciences (EUCASS), Saint Petersurg, Russia, July 2011.
https://hal.archives-ouvertes.fr/hal-00624479 -
47C. Dapogny, C. Dobrzynski, P. Frey.
Three-dimensional adaptive domain remeshing, implicit domain meshing, and applications to free and moving boundary problems, in: Journal of Computational Physics, April 2014, vol. 262, pp. 358-378.
https://hal.archives-ouvertes.fr/hal-01110395 -
48Z. Demirbilek, A. Zundel, O. Nwogu.
Boussinesq Modeling of Wave Propagation and Runup over Fringing Coral Reefs, Model Evaluation Report, in: Coastal and Hydraulics Laboratory Technical Note CHLTR0712, 2007, Vicksburg, MS: U.S. Army Engineer Research and Development Center. -
49V. A. Dobrev, T. V. Kolev, R. N. Rieben.
High order curvilinear finite elements for elasticoplastic Lagrangian dynamics, in: Journal of Computational Physics, 2014, vol. 257, Part B, pp. 1062–1080, Physics-compatible numerical methods. [ DOI : 10.1016/j.jcp.2013.01.015 ]
http://www.sciencedirect.com/science/article/pii/S0021999113000466 -
50C. Dobrzynski, P. Frey, B. Mohammadi, O. Pironneau.
Fast and accurate simulations of air-cooled structures, in: Computer Methods in Applied Mechanics and Engineering, 2006, vol. 195, pp. 3168-3180.
https://hal.archives-ouvertes.fr/hal-00112976 -
51V. Drean, G. Perrot, G. Couégnat, M. Ricchiuto, G. Vignoles.
Image-Based 2D Numerical Modeling of Oxide Formation in Self-Healing CMCs, in: Developments in Strategic Materials and Computational Design III, John Wiley & Sons, Inc., 2013, pp. 117–125.
http://dx.doi.org/10.1002/9781118217542.ch11 -
52M. Dumbser.
Arbitrary high order PNPM schemes on unstructured meshes for the compressible Navier-Stokes equations, in: Computers & Fluids, 2010, vol. 39, no 1, pp. 60–76. -
53C. Eskilsson, J. Palm, A. P. Engsig-Karup, U. Bosi, M. Ricchiuto.
Wave Induced Motions of Point-Absorbers: a Hierarchical Investigation of Hydrodynamic Models, in: 11th European Wave and Tidal Energy Conference (EWTEC), Nantes, France, September 2015.
https://hal.archives-ouvertes.fr/hal-01168780 -
54A. Filippini, M. Kazolea, M. Ricchiuto.
A flexible genuinely nonlinear approach for nonlinear wave propagation, breaking and runup, in: Journal of Computational Physics, 2016, vol. 310. -
55F. Fusi, A. Guardone, G. Quaranta, P. M. Congedo.
Multi-fidelity physics-based method for robust optimization with application to a hovering rotor airfoil, in: AIAA Journal, May 2015, 40 p.
https://hal.inria.fr/hal-01152698 -
56M. Hubbard.
Non-oscillatory third order fluctuation splitting schemes for steady scalar conservation laws, in: Journal of Computational Physics, 2007, vol. 222, no 2, pp. 740–768. -
57H. Hébert, S. Abadie, M. Benoit, R. Créach, C. Duluc, A. Frère, A. Gailler, S. Garziglia, Y. Hayashi, A. Lemoine, A. Loevenbruck, O. Macary, A. Maspataud, R. Marcer, D. Morichon, R. Pedreros, V. Rebour, M. Ricchiuto, F. Schindelé, R. S. Jacinto, M. Terrier, S. Toucanne, P. Traversa, D. Violeau.
TANDEM (Tsunamis in the Atlantic and the English ChaNnel: Definition of the Effects through numerical Modeling): a French initiative to draw lessons from the Tohoku-oki tsunami on French coastal nuclear facilities, in: EGU 2014 General Assembly, Vienna, 2014. -
58D. Isola, A. Guardone, G. Quaranta.
Arbitrary Lagrangian Eulerian formulation for two-dimensional flows using dynamic meshes with edge swapping, in: J. Comp. Phys., 2011, vol. 230, pp. 7706-7722. -
59H. Jia, K. Li.
A third accurate operator splitting method, in: Mathematical and Computer Modelling, 2011, vol. 53, no 102, pp. 387–396. [ DOI : 10.1016/j.mcm.2010.09.005 ]
http://www.sciencedirect.com/science/article/pii/S089571771000436X -
60T. Jiang.
Ship waves in shallow water, in: FORTSCHRITT BERICHTE-VDI REIHE 12 VERKEHRSTECHNIK FAHRZEUGTECHNIK, 2001. -
61E. Josyula, J. Burt.
Review of Rarefied gas effects in hypersonic applications, in: RTO AVT/VKI Lecture Series - Models and Computational Methods for Rarefied Flows, 2011. -
62M. Kazolea, A. Delis, C. Synolakis.
Numerical treatment of wave-breaking on unstructured finite volume approximations for extended Boussinesq-type equations, in: Journal of Computational Physics, 2014, vol. 271. -
63M. Kazolea, N. Kalligeris, N. Maravelakis, C. E. Synolakis, A. Delis, P. J. Lynett.
Numerical study of wave conditions for the old Venetian harbour of Chania in Crete, Greece, in: 36th International Association for Hydro-Environnement Engineering and Research (IAHR) World Conference, The Hague, Netherlands, June 2015. -
64A. Kennedy, J. T. Kirby, R. Dalrymple.
Boussinesq modeling of wave transformation, breaking and runup. Part I: 1D, in: J. Waterw. PortCoast. Ocean Eng., 2000, vol. 126, pp. 39–47. -
65D. Ketcheson, C. Macdonald, S. Ruuth.
Spatially partitioned embedded Runge-Kutta mehods, in: SIAM J. Numer. Anal., 2013, vol. 51, no 5, pp. 2887–2910. -
66N. Kroll, T. Leicht, C. Hirsch, F. Bassi, C. Johnston, K. Sorensen, K. Hillewaert.
Results and Conclusions of the European Project IDIHOM on High-Order Methods for Industrial Aerodynamic Applications, in: 53rd AIAA Aerospace Sciences Meeting, 2015. -
67D. Lannes.
On the dynamics of floating structures, in: Annals of PDE, 2017, vol. 3, no 1, 11 p. -
68A. Loseille, F. Alauzet.
Continuous mesh framework, Part II: validations and applications, in: SIAM in Numerical Analysis, 2011, vol. 49, no 1. -
69A. Loseille, A. Dervieux, P. Frey, F. Alauzet.
Achievement of global second-order mesh convergence for discontinuous flows with adapted unstructured meshes, in: 18th AIAA Computational Fluid Dynamics Conference, Miami (FL), 2007, AIAA paper 2007-4186. -
70T. Lundquist, J. Nordstrom.
The SBP-SAT technique for initial value problems, in: Journal of Computational Physics, 2014, vol. 270, pp. 86–104. -
71A. Mazaheri, H. Nishikawa.
Very efficient high-order hyperbolic schemes for time-dependent advection-diffusion problems: Third-, fourth-, and sixth-order, in: Computers and Fluids, 2014, vol. 102, pp. 131-147. -
72G. Mengaldo, D. de Grazia, D. Mozey, P. Vincent, S. Sherwin.
Dealiasing techniques for high-order spectral element methods on regular and irregular grids, in: Journal of Computational Physics, 2015, vol. 299, pp. 56–81. -
73F. Morency, H. Beaugendre, F. Gallizio.
Aerodynamic force evaluation for ice shedding phenomenon using vortex in cell scheme, penalisation and level set approaches, in: International Journal of Computational Fluid Dynamics, 2012, vol. 26, no 9-10, pp. 435-450.
https://hal.inria.fr/hal-00768349 -
74H. Nishikawa.
Beyond Interface Gradient: A General Principle for Constructing Diffusion Schemes, in: 40th AIAA Fluid Dynamics Conference and Exhibit, Chicago, AIAA Paper 2010-5093, 2010. -
75H. Nishikawa.
First-, Second-, and Third-Order Finite-Volume Schemes for Diffusion, in: J.Comput.Phys., 2014, vol. 273, pp. 287-309.
http://www.hiroakinishikawa.com/My_papers/nishikawa_jcp2014v273pp287-309_preprint.pdf -
76L. Nouveau, H. Beaugendre, C. Dobrzynski, R. Abgrall, M. Ricchiuto.
An explicit, adaptive, residual based splitting approach for the steardy and time dependent penalized Navier Stokes equations, in: Comput. Meth. Appl. Mech. Engrg., 2016, vol. 303, pp. 208–230. -
77O. Nwogu.
Numerical prediction of breaking waves and currents with a Boussinesq model, in: Proceedings 25th International Conference on Coastal Engineering, 1996. -
78M. Papadakis, H. Yeong, I. Suares.
Simulation of Ice Shedding from a Business Jet Aircraft, in: AIAA, Aerospace Sciences Meeting and Exhibit, 45 th, Reno, NV, 2007, AIAA Paper 2007-506. -
79G. Perrot, G. Couégnat, M. Ricchiuto, G. Vignoles.
2D numerical modelling of the two-scale lifetime of self-healing CMCs, in: International Workshop on Testing and Modeling Ceramic and Carbon Matrix Composites, ENS Cachan, France, June 2014, Abstract review. -
80P.-O. Persson, J. Peraire.
Curved mesh generation and mesh refinement using Lagrangian solid mechanics, in: Proc. of the 47th AIAA Aerospace Sciences Meeting and Exhibit, Ernest Orlando Lawrence Berkeley National Laboratory, Berkeley, CA (US), 2008, no LBNL-1426E. -
81F. Rebillat.
Advances in self-healing ceramic matrix composites, in: Advances in Ceramic Matrix Composites, I. Low (editor), Woodhead, 2014, pp. 369–409. -
82P. J. Roache.
Verification and validation in computational science and engineering, Hermosa, Albuquerque, NM, 1998.
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83V. Roeber, K. Cheung, M. Kobayashi.
Shock-capturing Boussinesq-type model for nearshore wave processes, in: Coastal Engineering, 2010, vol. 57, pp. 407–423. -
84L. Shi, Z. Wang, L. Zhang, W. Liu, S. Fu.
A PnPm CPR Framework for Hyperbolic Conservation Laws, in: Journal of Scientific Computing, 2014, vol. 61, no 2, pp. 281-307. -
85P. Thoutireddy, M. Ortiz.
A variational r-adaption and shape-optimization method for finite-deformation elasticity, in: International Journal for Numerical Methods in Engineering, 2004, vol. 61, no 1, pp. 1–21.
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86M. Tissier, P. Bonneton, F. Marche, F. Chazel, D. Lannes.
A new approach to handle wave breaking in fully non-linear Boussinesq models, in: Coastal Engineering, 2012, vol. 67, pp. 54–66. [ DOI : 10.1016/j.coastaleng.2012.04.004 ]
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87M. Tonelli, M. Petti.
Hybrid finite volume-finite difference scheme for 2DH improved Boussinesq equations, in: Coastal Engineering 56, 2009, pp. 609–620. -
88M. Tonelli, M. Petti.
Simulation of wave breaking over complex bathymetries by a Boussinesq model, in: Journal of Hydraulic Research, 2011, vol. 49, no 4, pp. 473-486. -
89P. Tran, P. Benquet, G. Baruzzi, W. Habashi.
Design of Ice Protection Systems and Icing Certification Through Cost - Effective Use of CFD, in: AIAA Aerospace Sciences Meeting and Exhibit, 2002, AIAA-CP 2002-0382. -
90F. Vilar, P.-H. Maire, R. Abgrall.
A discontinuous Galerkin discretization for solving the two-dimensional gas dynamics equations written under total Lagrangian formulation on general unstructured grids, in: Journal of Computational Physics, 2014, vol. 276, pp. 188–234. -
91J. Waltz, N. R. Morgan, T. R. Canfield, M. R. J. Charest, J. G. Wohlbier.
A nodal Godunov method for Lagrangian shock hydrodynamics on unstructured tetrahedral grids, in: International Journal for Numerical Methods in Fluids, 2014, vol. 76, no 3, pp. 129–146.
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92L. Wang, P.-O. Persson.
A high-order discontinuous Galerkin method with unstructured space-time meshes for two-dimensional compressible flows on domains with large deformations, in: Comput. & Fluids, 2015, vol. 118, pp. 53–68. -
93J. Weber.
WEC Technology Readiness and Performance Matrix, finding the best research technology development trajectory, in: 4th International Conference on Ocean Engineering - ICOE, 2012.