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Bibliography

Publications of the year

Articles in International Peer-Reviewed Journals

  • 1E. Blayo, A. Rousseau, M. Tayachi Pigeonnat.

    Boundary conditions and Schwarz waveform relaxation method for linear viscous Shallow Water equations in hydrodynamics, in: SMAI Journal of Computational Mathematics, 2017, vol. 3, pp. 117-137. [ DOI : 10.5802/smai-jcm.22 ]

    https://hal.inria.fr/hal-01467335
  • 2A. Duran, F. MARCHE.

    A discontinuous Galerkin method for a new class of Green-Naghdi equations on simplicial unstructured meshes, in: Applied Mathematical Modelling, January 2017.

    https://hal.archives-ouvertes.fr/hal-01303217
  • 3P. Gajardo, J. Harmand, H. Ramirez Cabrera, A. Rapaport, V. Riquelme, A. Rousseau.

    Modeling and control of in-situ decontamination of large water resources, in: ESAIM: Proceedings and Surveys, 2017, vol. 57, pp. 70-85. [ DOI : 10.1051/proc/201657070 ]

    https://hal.inria.fr/hal-01459969
  • 4V. Guinot.

    A critical assessment of flux and source term closures in shallow water models with porosity for urban flood simulations, in: Advances in Water Resources, November 2017, vol. 109, pp. 133-157. [ DOI : 10.1016/j.advwatres.2017.09.002 ]

    https://hal.archives-ouvertes.fr/hal-01582224
  • 5V. Guinot.

    Consistency and bicharacteristic analysis of integral porosity shallow water models. Explaining model oversensitivity to mesh design, in: Advances in Water Resources, September 2017, vol. 107, pp. 43-55. [ DOI : 10.1016/j.advwatres.2017.06.008 ]

    https://hal.archives-ouvertes.fr/hal-01541070
  • 6V. Guinot, B. E. Sanders, J. E. Schubert.

    Dual integral porosity shallow water model for urban flood modelling, in: Advances in Water Resources, May 2017, vol. 103, pp. 16-31. [ DOI : 10.1016/j.advwatres.2017.02.009 ]

    https://hal.archives-ouvertes.fr/hal-01465071
  • 7C. Lucas, J. C. Mcwilliams, A. Rousseau.

    On nontraditional quasi-geostrophic equations, in: ESAIM: Mathematical Modelling and Numerical Analysis, 2017, vol. 51, no 2, pp. 427-442. [ DOI : 10.1051/m2an/2016041 ]

    https://hal.inria.fr/hal-01232740

Invited Conferences

  • 8A. Rousseau, A. Rapaport.

    Reduced Models (and control) of in-situ decontamination of large water resources, in: Sino-French Conference on Modeling, Mathematical Analysis and Computation, Xiamen, China, Chuanju Xu and Alain Miranville, June 2017, 27 p.

    https://hal.inria.fr/hal-01543675

International Conferences with Proceedings

  • 9B. Commandre, D. En-Nejjary, L. Pibre, M. Chaumont, C. Delenne, N. Chahinian.

    Manhole Cover Localization in Aerial Images with a Deep Learning Approach, in: ISPRS Hannover Workshop: HRIGI 17 – CMRT 17 – ISA 17 – EuroCOW 17, Hannover, Germany, June 2017, vol. XLII-1/W1, pp. 333-338. [ DOI : 10.5194/isprs-archives-XLII-1-W1-333-2017 ]

    https://hal.archives-ouvertes.fr/hal-01556762
  • 10B. Commandré, N. Chahinian, J.-S. Bailly, M. Chaumont, G. Subsol, F. Rodriguez, M. Derras, L. Deruelle, C. Delenne.

    Automatic reconstruction of urban wastewater and stormwater networks based on uncertain manhole cover locations, in: 14th IWA/IAHR International Conference on Urban Drainage, ICUD 2017, Prague, Czech Republic, September 2017, pp. 2345-2352.

    https://hal.archives-ouvertes.fr/hal-01584776
  • 11M. P. DAOU, O. Bertrand, E. Blayo, A. Rousseau.

    Tridimensional model coupling using Schwarz methodology - Application to a water intake of a hydroelectric plant, in: Simhydro 2017, Sophia-Antipolis, France, June 2017, pp. 14 - 16.

    https://hal.inria.fr/hal-01659455
  • 12S. Majdalani, C. Delenne, V. Guinot.

    Tracer experiments in periodical heterogeneous model porous medium, in: Powders and Grains 2017, Montpellier, France, EPJ Web of Conferences, July 2017, vol. 140, no 09020 (2017). [ DOI : 10.1051/epjconf/201714009020 ]

    https://hal.archives-ouvertes.fr/hal-01576082

Conferences without Proceedings

  • 13J.-S. Bailly, M. Dartevelle, C. Delenne, A. Rousseau.

    Estimating continuous floodplain and major river bed topography mixing ordinal contour lines and topographic points , in: AGU2017 Fall Meeting, New-Orleans, United States, December 2017.

    https://hal.archives-ouvertes.fr/hal-01678041
  • 14T. Bayen, L. Dagnas, H. Ramirez, A. Rapaport, A. Rousseau, M. Sebbah.

    Optimal policy of water extraction of coastal lagoon under state constraints, in: Word Conference on Natural Resource Modeling WCNRM2017, Barcelona, Spain, June 2017.

    https://hal.archives-ouvertes.fr/hal-01536235
  • 15M. Crespo Moya, J. ORSONI, J. BORTOLI, A. Rapaport, A. Rousseau.

    JOURDAIN : Project of Indirect Potable Reuse (IPR) demonstrator in Vendée: Computational modelling as an enhancement tool, in: Gruttee 2017 : 12ème congrès international du GRUTTEE, Strasbourg, France, October 2017, vol. 70, pp. 1078 - 1104.

    https://hal.archives-ouvertes.fr/hal-01624929
  • 16C. Delenne, N. Chahinian, J.-S. Bailly, S. Bringay, B. Commandre, M. Chaumont, M. Derras, L. Deruelle, M. Roche, F. Rodriguez, G. Subsol, M. Teisseire.

    Cart'Eaux: an automatic mapping procedure for wastewater networks using machine learning and data mining Plain Language Summary Authors, in: AGU Fall Meeting, New-Orleans, United States, December 2017.

    https://hal.archives-ouvertes.fr/hal-01680121

Scientific Books (or Scientific Book chapters)

  • 17F. A. Chave, D. A. Di Pietro, F. A. Marche.

    A Hybrid High-Order method for the convective Cahn–Hilliard problem in mixed form, in: Finite Volumes for Complex Applications VIII, C. Cancès, P. Omnes (editors), Finite Volumes for Complex Applications VIII - Hyperbolic, Elliptic and Parabolic Problems, Springer, June 2017, vol. 200, pp. 517-525.

    https://hal.archives-ouvertes.fr/hal-01477247

Other Publications

  • 18T. Bayen, L. Dagnas, H. Ramirez Cabrera, A. Rapaport, A. Rousseau, M. Sebbah.

    Analysis of a state constraint optimal control problem related to the modelling of coastal lagoons, 2017, working paper or preprint.

    https://hal.inria.fr/hal-01468979
  • 19J. G. Caldas Steinstraesser, R. Cienfuegos, J. D. Galaz Mora, A. Rousseau.

    A Schwarz-based domain decomposition method for the dispersion equation, October 2017, working paper or preprint.

    https://hal.inria.fr/hal-01617692
References in notes
  • 20J. N. Bacro, C. Gaetan, G. Toulemonde.

    A flexible dependence model for spatial extremes, in: Journal of Statistical Planning and Inference, 2016, vol. 172, pp. 36–52.
  • 21S. Barbier, A. Rapaport, A. Rousseau.

    Modelling of biological decontamination of a water resource in natural environment and related feedback strategies, in: Journal of Scientific Computing, 2016, vol. 68(3), pp. 1267–1280.
  • 22A. Baxevani, J. Lennatsson.

    A spatiotemporal precipitation generator based on a censored latent Gaussian field, in: Water Resour. Res., 2015, vol. 51, pp. 4338-4358.
  • 23J.-P. Bernard, E. Frenod, A. Rousseau.

    Paralic confinement computations in coastal environment with interlocked areas, in: Discrete and Continuous Dynamical Systems - Series S, February 2015, vol. 8, no 1, pp. 45-54. [ DOI : 10.3934/dcdss.2015.8.45 ]

    https://hal.archives-ouvertes.fr/hal-00833340
  • 24E. Blayo, A. Rousseau.

    About Interface Conditions for Coupling Hydrostatic and Nonhydrostatic Navier-Stokes Flows, in: Discrete and Continuous Dynamical Systems - Series S, 2015, 10 p.

    https://hal.inria.fr/hal-01185255
  • 25S. Caires, L. de Haan, R. L. Smith.

    On the determination of the temporal and spatial evolution of extreme events, Deltares, 2011, report 1202120-001-HYE-004 (for Rijkswaterstaat, Centre for Water Management).
  • 26R. Chailan, F. Bouchette, C. Dumontier, O. Hess, A. Laurent, O. Lobry, H. Michaud, S. Nicoud, G. Toulemonde.

    High performance pre-computing: Prototype application to a coastal flooding decision tool, in: Knowledge and Systems Engineering (KSE), 2012 Fourth International Conference on, IEEE, 2012, pp. 195–202.
  • 27R. Chailan.

    Application of Scientific Computing and Statistical Analysis to Address Coastal Hazards, University of Montpellier, 2015.
  • 28R. Chailan, G. Toulemonde, J.-N. Bacro.

    A semiparametric method to simulate bivariate space–time extremes, in: Ann. Appl. Stat., 2017, vol. 11, no 3, pp. 1403–1428.

    https://doi.org/10.1214/17-AOAS1031
  • 29R. Chailan, G. Toulemonde, F. Bouchette, A. Laurent, F. Sevault, H. Michaud.

    Spatial assessment of extreme significant waves heights in the Gulf of Lions, in: Coastal Engineering Proceedings, 2014, vol. 1, no 34, pp. management–17.
  • 30R. A. Davis, C. Klüppelberg, C. Steinkohl.

    Max-stable processes for modeling extremes observed in space and time, in: Journal of the Korean Statistical Society, 2013, vol. 42, pp. 399–414.
  • 31R. A. Davis, C. Klüppelberg, C. Steinkohl.

    Statistical inference for max-stable processes in space and time, in: Journal of the Royal Statistical Society, 2013, vol. 75, pp. 791–819.
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    Geostatistics of extremes, in: Proceedings of the Royal Society London, Series A, 2012, vol. 468, pp. 581-608.
  • 33A. C. Davison, R. Huser, E. Thibaud.

    Geostatistics of dependent and asymptotically independent extremes, in: Journal of Mathematical Geosciences, 2013, vol. 45, pp. 511–529.
  • 34A. C. Davison, S. A. Padoan, M. Ribatet.

    Statistical modelling of spatial extremes, in: Statistical Science, 2012, vol. 27, pp. 161-186.
  • 35A. Defina.

    Two-dimensional shallow flow equations for partially dry areas, in: Water Resour. Res., 2000, vol. 36, no 11, 3251 p. [ DOI : 10.1029/2000WR900167 ]
  • 36C. Delenne, J.-S. Bailly, M. Dartevelle, N. Marcy, A. Rousseau.

    Combining punctual and ordinal contour data for accurate floodplain topography mapping (poster and 8p. paper), in: Spatial accuracy: International symposium on "Spatial Accuracy Assessment in Natural Resources and Environmental Sciences", Montpellier (France), J. S. Bailly, D. Griffith, D. Josselin (editors), 5-8 July 2016.
  • 37C. Delenne, G. Rabatel, M. Deshayes.

    An automatized frequency analysis for vine plot detection and delineation in remote sensing, in: IEEE Geosciences and Remote Sensing Letters, 2008, vol. 5, no 3, pp. 341-345. [ DOI : 10.1109/LGRS.2008.916065 ]
  • 38A. Ferrari, R. Vacondio, S. Dazzi, P. Mignosa.

    A 1D–2D Shallow Water Equations solver for discontinuous porosity field based on a Generalized Riemann Problem, in: Adv. Water Resour., 2017, vol. 107, pp. 233-249. [ DOI : 10.1016/j.advwatres.2017.06.023 ]
  • 39A. Ferreira, L. de Haan.

    The generalized Pareto process; with a view towards application and simulation, in: Bernoulli, 2014, vol. 20, no 4, pp. 1717–1737.

    https://doi.org/10.3150/13-BEJ538
  • 40P. Franks.

    A flexible dependence model for spatial extremes, in: Limnol. Oceanogr., 1997.
  • 41E. Frénod, A. Rousseau.

    Paralic Confinement: Models and Simulations, in: Acta Appl Math, January 2013, vol. 123, no 1, pp. 1–19.
  • 42L. Giustarini, R. Hostache, M. Kavetski, G. Corato, S. Schlaffer, P. Matgen.

    Probabilistic flood mapping using synthetic aperture radar data, in: IEEE Trans. Geosci. Remote Sens., 2016, vol. 54, no 12, pp. 6958-6969.
  • 43A. Green, P. Naghdi.

    A derivation of equations for wave propagation in water of variable depth, in: J. Fluid Mech., 1976, vol. 2, pp. 237–246.
  • 44J. Groeneweg, S. Caires, K. Roscoe.

    Temporal and Spatial Evolution of Extreme Events, in: Coastal Engineering Proceedings, 2012, vol. 1, no 33, pp. management–9.
  • 45V. Guinot, C. Delenne.

    Macroscopic modelling of urban floods, in: La Houille Blanche, 2014, vol. 6, pp. 19–25.
  • 46V. Guinot.

    Multiple porosity shallow water models for macroscopic modelling of urban floods, in: Adv. Water Resour., 2012, vol. 37, pp. 40–72. [ DOI : 10.1016/j.advwatres.2011.11.002 ]
  • 47V. Guinot, B. Sanders, J. Schubert, S. Soares-Frazao, J. Lhomme, V. Guinot, Y. Zech, M. Velickovic, Y. Zech, S. Soares-Frazão, D. Viero, M. Mohammad Valipour.

    Modeling anisotropy in free-surface overland and shallow inundation flows, in: Adv. Water Resour., jan 2017, vol. 104, no 1, pp. 1–14.

    https://www.tandfonline.com/doi/full/10.1080/00221686.2016.1238013
  • 48V. Guinot, S. Soares-Frazão.

    Flux and source term discretization in two-dimensional shallow water models with porosity on unstructured grids, in: Int. J. Numer. Methods Fluids, 2006, vol. 50, no 3, pp. 309–345. [ DOI : 10.1002/fld.1059 ]
  • 49R. Hostache, X. Lai, J. Monnier, C. Puech.

    Assimilation of spatially distributed water levels into a shallow-water flood model. part ii : Use of a remote sensing image of mosel river, in: Journal of Hydrology, 2010, vol. 390, no 3-4, pp. 257-268.
  • 50R. Huser, A. C. Davison.

    Space-time modelling of extreme events, in: Journal of the Royal Statistical Society: Series B, 2014, vol. 76, pp. 439–461.
  • 51R. Huser, T. Opitz, E. Thibaud.

    Bridging asymptotic independence and dependence in spatial extremes using Gaussian scale mixtures, in: Spat. Stat., 2017, vol. 21, no part A, pp. 166–186.

    https://doi.org/10.1016/j.spasta.2017.06.004
  • 52Z. Kabluchko, M. Schlather, L. de Haan.

    Stationary max-stable fields associated to negative definite functions, in: The Annals of Probability, 2009, pp. 2042–2065.
  • 53B. Kim, B. F. Sanders, J. S. Famiglietti, V. Guinot.

    Urban flood modeling with porous shallow-water equations: A case study of model errors in the presence of anisotropic porosity, in: J. Hydrol., 2015, vol. 523, pp. 680–692. [ DOI : 10.1016/j.jhydrol.2015.01.059 ]
  • 54D. Lannes, P. Bonneton.

    Derivation of asymptotic two-dimensional time-dependent equations for surface water wave propagation, in: Physics of Fluids, 2009, vol. 21, 016601 doi:10.1063/1.3053183.
  • 55E. Leblois, J. D. Creutin.

    Space-time simulation of intermittent rainfall with prescribed advection field: Adaptation of the turning band method, in: Water Resources Research, 2013, vol. 49(6), pp. 3375-3387.
  • 56C. Lucas, A. Rousseau.

    New Developments and Cosine Effect in the Viscous Shallow Water and Quasi-Geostrophic Equations, in: Multiscale Modeling and Simulations, 2008, vol. 7, no 2, pp. 793–813.

    http://hal.inria.fr/inria-00180921
  • 57P. Naveau, R. Huser, P. Ribereau, A. Hannart.

    Modeling jointly low, moderate and heavy rainfall intensities without a threshold selection, in: Water Resour. Res., 2016, vol. 52.
  • 58A. Ogilvie, G. Belaud, C. Delenne, J.-C. Bader, A. Oleksiak, J. S. Bailly, L. Ferry, D. Martin.

    Decadal monitoring of the Niger Inner Delta flood dynamics using MODIS optical data, in: Journal of Hydrology, 2015), vol. 523, pp. 358-383. [ DOI : 10.1016/j.jhydrol.2015.01.036 ]
  • 59T. Opitz.

    Extremal t processes: elliptical domain of attraction and a spectral representation, in: J. Multivariate Anal., 2013, vol. 122, pp. 409–413.

    https://doi.org/10.1016/j.jmva.2013.08.008
  • 60T. Opitz.

    Modeling asymptotically independent spatial extremes based on Laplace random fields, in: Spat. Stat., 2016, vol. 16, pp. 1–18.

    https://doi.org/10.1016/j.spasta.2016.01.001
  • 61J. Pasquet, T. Desert, O. Bartoli, M. Chaumon, C. Delenne, G. Subsol, M. Derras, N. Chahinian.

    Detection of manhole covers in high-resolution aerial images of urban areas by combining two methods, in: IEEE J. Sel. Top. Appl. earth Obs. Remote Sens., 2016, vol. 9, no 5, pp. 1802–1807. [ DOI : 10.1109/JSTARS.2015.2504401 ]
  • 62G. Rabatel, C. Delenne, M. Deshayes.

    A non-supervised approach using Gabor filters for vine plot detection in aerial images, in: Computers and Electronics in Agriculture, 2008, vol. 62, no 2, pp. 159-168. [ DOI : 10.1016/j.compag.2007.12.010 ]
  • 63R. Salmon.

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  • 64B. F. Sanders, J. E. Schubert, H. A. Gallegos.

    Integral formulation of shallow-water equations with anisotropic porosity for urban flood modeling, in: J. Hydrol., 2008, vol. 362, no 1-2, pp. 19–38. [ DOI : 10.1016/j.jhydrol.2008.08.009 ]
  • 65M. Schlather.

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    Efficient inference and simulation for elliptical Pareto processes, in: Biometrika, 2015, vol. 102, no 4, pp. 855–870.

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  • 72H. L. Tolman.

    User Manual and System Documentation of WAVEWATCH III® version 4.18, Technical note, MMAB Contribution, 2014, no 316.
  • 73G. Toulemonde, P. Ribereau, P. Naveau.

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    Calibration of channel depth and friction parameters in the Lisflood-FP hydraulic model using medium resolution SAR data and identifiability techniques., in: Hydrol. Earth Syst. Sci, 2016, vol. 20, pp. 4983-4997.
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