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Bibliography

Major publications by the team in recent years
  • 1V. Guinot, C. Delenne, A. Rousseau, O. Boutron.

    Flux closures and source term models for shallow water models with depth-dependent integral porosity, in: Advances in Water Resources, September 2018, vol. 122, pp. 1-26. [ DOI : 10.1016/j.advwatres.2018.09.014 ]

    https://hal.archives-ouvertes.fr/hal-01884110
Publications of the year

Articles in International Peer-Reviewed Journals

  • 2J. G. Caldas Steinstraesser, R. Cienfuegos, J. D. Galaz Mora, A. Rousseau.

    A Schwarz-based domain decomposition method for the dispersion equation, in: Journal of Applied Analysis and Computation, 2018.

    https://hal.inria.fr/hal-01617692
  • 3M. Crespo Moya, J. Orsoni, J. Bortoli, A. Rapaport, A. Rousseau, V. Jauzein.

    Optimal strategies to refill hydric reservoirs with reused water – application to the Jaunay Lake case study, in: Journal of Water Science / Revue des Sciences de l'Eau, 2018.

    https://hal.archives-ouvertes.fr/hal-01808607
  • 4V. Guinot, C. Delenne, A. Rousseau, O. Boutron.

    Flux closures and source term models for shallow water models with depth-dependent integral porosity, in: Advances in Water Resources, September 2018, vol. 122, pp. 1-26. [ DOI : 10.1016/j.advwatres.2018.09.014 ]

    https://hal.archives-ouvertes.fr/hal-01884110
  • 5S. Majdalani, V. Guinot, C. Delenne, H. Gebran.

    Modelling solute dispersion in periodic heterogeneous porous media: model benchmarking against intermediate scale experiments, in: Journal of Hydrology, 2018, vol. 561, pp. 427-443. [ DOI : 10.1016/j.jhydrol.2018.03.024 ]

    https://hal.archives-ouvertes.fr/hal-01728193
  • 6N. Mazzilli, V. Guinot, H. Jourde, N. Lecoq, D. Labat, B. Arfib, C. Baudement, c. Danquigny, L. Dal Soglio, D. Bertin.

    KarstMod: A modelling platform for rainfall - discharge analysis and modelling dedicated to karst systems, in: Environmental Modelling and Software, 2018. [ DOI : 10.1016/j.envsoft.2017.03.015 ]

    https://hal.archives-ouvertes.fr/hal-01685224

Invited Conferences

  • 7C. Mokrani, M. Bossy, A. Rousseau.

    Towards a first validation of the SDM model for marine flows, in: Simulation et Optimisation pour les Energies Marines Renouvelables, Paris, France, January 2018.

    https://hal.inria.fr/hal-01697596

International Conferences with Proceedings

  • 8T. Bonnabaud La Bruyère, N. Chahinian, C. Delenne, L. Deruelle, M. Derras, F. Frontini, R. Panckhurst, M. Roche, L. Sautot, M. Teisseire.

    Mégadonnées, données liées et fouille de données pour les réseaux d'assainissement, in: SAGEO 2018, Montpellier, France, November 2018.

    https://hal.archives-ouvertes.fr/hal-01921856
  • 9V. Guinot, S. Soares-Frazão, C. Delenne.

    Experimental validation of transient source term in porosity-based shallow water models, in: River Flow 2018 - Ninth International Conference on Fluvial Hydraulics, Villeurbanne, France, September 2018, vol. 40.

    https://hal.archives-ouvertes.fr/hal-01878242
  • 10F. Palacios Rodríguez, G. Toulemonde, J. Carreau, T. Opitz.

    On space-time extreme simulations of rainfall in Mediterranean France, in: SWGEN 2018 - Stochastic Weather Generators Conference, Boulder (Colorado), United States, October 2018.

    https://hal.inria.fr/hal-01968106
  • 11F. Palacios Rodríguez, G. Toulemonde, J. Carreau, T. Opitz.

    Space-time extreme processes simulation for flash floods in Mediterranean France, in: METMA 2018 - 9th Workshop on Spatio-temporal modelling, Montpellier, France, June 2018, pp. 1-4.

    https://hal.inria.fr/hal-01968104

Conferences without Proceedings

  • 12J. G. Caldas Steinstraesser, G. Kemlin, A. Rousseau.

    Discrete transparent boundary conditions for domain decomposition in coastal oceanography, in: 3rd International Workshop on Wave & Tidal Energy, Valdivia, Chile, November 2018.

    https://hal.archives-ouvertes.fr/hal-01946992
  • 13J. G. Caldas Steinstraesser, G. Kemlin, A. Rousseau.

    Domain decomposition methods for linearized Boussinesq type equations, in: 16ème Journées de l'Hydrodynamique, Marseille, France, November 2018.

    https://hal.inria.fr/hal-01938689
  • 14J. Carreau, G. Toulemonde.

    Extra-Parametrized Extreme Value Copula : Extension to a Spatial Framework, in: METMA 9, Montpellier, France, June 2018.

    https://hal.archives-ouvertes.fr/hal-01964312
  • 15B. Commandré, D. En-Nejjary, L. Pibre, M. Chaumont, G. Subsol, L. Deruelle, M. Derras, C. Delenne, N. Chahinian.

    Détection de regards de visite sur des images à haute résolution spatiale par une méthode d'apprentissage, in: TEMU: Télédétection pour l'Etude des Milieux Urbains, Strasbourg, France, March 2018.

    https://hal.archives-ouvertes.fr/hal-01867226
  • 16G. Toulemonde, J.-N. Bacro, C. Gaetan, T. Opitz.

    Hierarchical space-time modeling of exceedances, in: CMStatistics 2018, Pise, Italy, December 2018.

    https://hal.archives-ouvertes.fr/hal-01964322
  • 17G. Toulemonde.

    Space-time simulations of extreme rainfall : why and how ?, in: CIMOM'18, Mayotte, France, November 2018.

    https://hal.archives-ouvertes.fr/hal-01964315

Scientific Popularization

  • 18J. Harmand, A. Rapaport, A. Rousseau.

    Épuration de ressources hydriques en circuit fermé, in: Systèmes complexes, de la biologie aux territoires, Les Dossiers d'Agropolis International, Agropolis Fondation, June 2018, no 23, 68 p.

    https://hal.archives-ouvertes.fr/hal-01823250

Other Publications

  • 19J. G. Caldas Steinstraesser, G. Kemlin, A. Rousseau.

    A domain decomposition method for linearized Boussinesq-type equations, May 2018, working paper or preprint.

    https://hal.inria.fr/hal-01797823
  • 20C. Casenave, A. Rousseau, J. L. Kahn Casapia.

    Coupling and reduction of hydro-ecological models for the simulation of freshwater aquatic ecosystems, November 2018, 7èmes journées scientifiques du LabEx NUMEV, Poster.

    https://hal.inria.fr/hal-01955787
  • 21M. Di Iorio, M. Bossy, C. Mokrani, A. Rousseau.

    Particle tracking methodology for Lagrangian numerical simulations, November 2018, Wave and Tidal - 3rd International Workshop, Poster.

    https://hal.inria.fr/hal-01931714
  • 22A. Kamakshidasan, J. D. Galaz Mora, R. Cienfuegos, A. Rousseau, E. Pietriga.

    Comparative Visualization of Deep Water Asteroid Impacts on Ultra-high-resolution Wall Displays with Seawall, October 2018, pp. 1-2, IEEE VIS 2018 - IEEE Conference on Visualization, Poster.

    https://hal.inria.fr/hal-01888112
  • 23C. Mokrani, M. Bossy, M. Di Iorio, A. Rousseau.

    Numerical Modelling of Hydrokinetic Turbines Immersed in Complex Topography using Non-Rotative Actuator Discs, December 2018, working paper or preprint.

    https://hal.inria.fr/hal-01966351
  • 24F. Palacios Rodríguez, J. M. Fernández Ponce, E. Di Bernardino, M. d. R. Rodríguez Griñolo.

    Flood risk assessment by multivariate risk measures, April 2018, Séminaire BioSP-INRA Avignon, Poster.

    https://hal.inria.fr/hal-01968101
  • 25F. Palacios Rodríguez, G. Toulemonde, J. Carreau, T. Opitz.

    Heavy rainfall simulations by space-time processes, November 2018, 7èmes journées scientifiques du LabEx NUMEV, Poster.

    https://hal.inria.fr/hal-01968108
  • 26F. Palacios Rodríguez, G. Toulemonde, J. Carreau, T. Opitz.

    How to simulate space-time extreme processes to assess natural disasters?, May 2018, Workshop Rare Events, Extremes and Machine Learning, Poster.

    https://hal.inria.fr/hal-01968103
References in notes
  • 27J. N. Bacro, C. Gaetan, T. Opitz, G. Toulemonde.

    Space-time exceedances modelling : an application with rainfall data, in: submitted to JASA, arXiv:1708.02447, 2018.
  • 28J. 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.
  • 29S. 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.
  • 30A. Baxevani, J. Lennatsson.

    A spatiotemporal precipitation generator based on a censored latent Gaussian field, in: Water Resour. Res., 2015, vol. 51, pp. 4338-4358.
  • 31J.-P. Bernard, E. Frénod, 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
  • 32E. 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
  • 33S. 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).
  • 34R. 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.
  • 35R. Chailan.

    Application of Scientific Computing and Statistical Analysis to Address Coastal Hazards, University of Montpellier, 2015.
  • 36R. 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
  • 37R. 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.
  • 38H. Chen, A. Cohn.

    Buried Utility Pipeline Mapping Based on Multiple Spatial Data Sources: A Bayesian Data Fusion Approach, in: IJCAI-11, Barcelona, Spain, 2011, pp. 2411-2417.
  • 39R. 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.
  • 40R. 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.
  • 41A. C. Davison, M. M. Gholamrezaee.

    Geostatistics of extremes, in: Proceedings of the Royal Society London, Series A, 2012, vol. 468, pp. 581-608.
  • 42A. C. Davison, R. Huser, E. Thibaud.

    Geostatistics of dependent and asymptotically independent extremes, in: Journal of Mathematical Geosciences, 2013, vol. 45, pp. 511–529.
  • 43A. C. Davison, S. A. Padoan, M. Ribatet.

    Statistical modelling of spatial extremes, in: Statistical Science, 2012, vol. 27, pp. 161-186.
  • 44A. Defina.

    Two-dimensional shallow flow equations for partially dry areas, in: Water Resour. Res., 2000, vol. 36, no 11, 3251 p.

    http://dx.doi.org/10.1029/2000WR900167
  • 45C. 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.
  • 46C. 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.

    http://dx.doi.org/10.1109/LGRS.2008.916065
  • 47A. 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.

    http://dx.doi.org/10.1016/j.advwatres.2017.06.023
  • 48A. 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
  • 49P. Franks.

    A flexible dependence model for spatial extremes, in: Limnol. Oceanogr., 1997.
  • 50E. Frénod, A. Rousseau.

    Paralic Confinement: Models and Simulations, in: Acta Appl Math, January 2013, vol. 123, no 1, pp. 1–19.
  • 51L. 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.
  • 52A. 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.
  • 53J. Groeneweg, S. Caires, K. Roscoe.

    Temporal and Spatial Evolution of Extreme Events, in: Coastal Engineering Proceedings, 2012, vol. 1, no 33, pp. management–9.
  • 54F. Guardiano, M. Srivastava.

    Multivariate geostatistics: beyond bivariate moments, in: Geostatistics-Troia, A. Soares (editor), Kluwier Acad., Dordrecht, Netherlands, 1993, pp. 133-144.
  • 55V. Guinot, C. Delenne.

    Macroscopic modelling of urban floods, in: La Houille Blanche, 2014, vol. 6, pp. 19–25.
  • 56V. Guinot.

    Multiple porosity shallow water models for macroscopic modelling of urban floods, in: Adv. Water Resour., 2012, vol. 37, pp. 40–72.

    http://dx.doi.org/10.1016/j.advwatres.2011.11.002
  • 57V. Guinot, B. F. Sanders, J. E. Schubert.

    A critical assessment of flux and source term closures in shallow water models with porosity for urban flood simulations, in: Advances in Water Resources, 2017, vol. 109, pp. 133-157.
  • 58V. Guinot, B. F. Sanders, J. E. Schubert.

    Consistency and bicharacteristic analysis of integral porosity shallow water models. Explaining model oversensitivity to grid design, in: Advances in Water Resources, 2017, vol. 107, pp. 34-55.
  • 59V. Guinot, B. F. Sanders, J. E. Schubert.

    Dual integral porosity shallow water model for urban flood modelling, in: Advances in Water Resources, 2017, vol. 103, pp. 16-31.
  • 60V. Guinot, M. Savéan, H. Jourde, L. Neppel.

    Conceptual rainfall-runoff model with a two parameter, infinite characteristic time transfer function, in: Hydrological Processes, 2015, vol. 29, pp. 4756-4778.
  • 61V. 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.

    http://dx.doi.org/10.1002/fld.1059
  • 62R. 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.
  • 63R. 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.
  • 64R. 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
  • 65Z. Kabluchko, M. Schlather, L. de Haan.

    Stationary max-stable fields associated to negative definite functions, in: The Annals of Probability, 2009, pp. 2042–2065.
  • 66E. Kergosien, H. Alatrista-Salas, M. Gaio, F. Güttler, M. Roche, M. Teisseire.

    When Textual Information Becomes Spatial Information Compatible with Satellite Images, in: KDIR, 2015, pp. 301-306.
  • 67B. 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.

    http://dx.doi.org/10.1016/j.jhydrol.2015.01.059
  • 68D. 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.
  • 69E. 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.
  • 70C. 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
  • 71G. Mariethoz, P. Renard, J. Straubhaar.

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    Modeling jointly low, moderate and heavy rainfall intensities without a threshold selection, in: Water Resour. Res., 2016, vol. 52.
  • 73A. 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.

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    Assessing optical earth observation systems for mapping and monitoring temporary ponds in arid areas, in: International Journal of Applied Earth Observation and Geoinformation, 2009, vol. 11, no 5, pp. 344-351.
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