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Modelling for Aquatic Systems (ULG-MAST)

Overkoepelend instituut: Université de Liège; Faculté des Sciences; Département d'Astrophysique, Géophysique et Océanographie (ULG-AGO), meer

Thesaurustermen (3) : Biogeochemie; Ecosysteemfunctioneren; Hydrodynamica

Abstract:
De onderzoeksgroep Modelling for Aquatic Systems (MAST) ontwikkelt modellen om de interacties tussen de fysica van de oceaan, biogeochemische cycli en het functioneren van ecosystemen te begrijpen. Deze modellen worden gebruikt voor het voorspellen en projecteren van de toestand van de oceaan en de mogelijke effecten van mondiale milieuveranderingen op het functioneren van mariene systemen.

Het onderzoek van de groep omvat de volgende onderwerpen
  • ontwikkeling van stochastische modelbenaderingen en gegevensassimilatie ter verbetering van mariene milieuvoorspellingen;
  • uitbreiding van modellen om de interacties met andere componenten van het aardsysteem beter weer te geven (Earth System modelling benadering);
  • begrip en voorspelling van mariene desoxygenatie en de gevolgen daarvan voor mariene ecosystemen en de biogeochemische cycli van koolstof, stikstof en fosfor;
  • ontwikkeling van methodologieën om de voorspellingen van hydrodynamisch-biogeochemische modellen te koppelen aan de beoordeling van de goederen en diensten die door mariene ecosystemen worden geleverd.

Publicaties (25)  Top 
    ( 21 peer reviewed ) opsplitsen filter
  • Peer reviewed article Grégoire, M.; Alvera-Azcaráte, A.; Buga, L.; Capet, A.; Constantin, S.; D’Ortenzio, F.; Doxaran, D.; Faugeras, Y.; García-Espriu, A.; Golumbeanu, M.; González-Haro, C.; González-Gambau, V.; Kasprzyk, J.-P.; Ivanov, E.; Mason, E.; Mateescu, R.; Meulders, C.; Olmedo, E.; Pons, L.; Pujol, M.-I.; Sarbu, G.; Turiel, A.; Vandenbulcke, L.; Rio, M.-H. (2023). Monitoring Black Sea environmental changes from space: jnew products for altimetry, ocean colour and salinity. Potentialities and requirements for a dedicated in-situ observing system. Front. Mar. Sci. 9: 998970. https://dx.doi.org/10.3389/fmars.2022.998970, meer
  • Peer reviewed article Lange, N.; Tanhua, T.; Pfeil, B.; Bange, H.W.; Lauvset, S.K.; Grégoire, M.; Bakker, D.C.E.; Jones, S.D.; Fiedler, B.; O'Brien, K.M.; Kortzinger, A. (2023). A status assessment of selected data synthesis products for ocean biogeochemistry. Front. Mar. Sci. 10: 1078908. https://dx.doi.org/10.3389/fmars.2023.1078908, meer
  • Peer reviewed article Alaerts, L.; Dobbelaere, T.; Gravinese, P.M.; Hanert, E. (2022). Climate change will fragment Florida stone crab communities. Front. Mar. Sci. 9: 839767. https://dx.doi.org/10.3389/fmars.2022.839767, meer
  • Peer reviewed article Capet, A.; Taburet, G.; Mason, E.; Pujol, M.I.; Gregoire, M.; Rio, M.-H. (2022). Using Argo floats to characterize altimetry products: a study of eddy-induced subsurface oxygen anomalies in the Black Sea. Front. Mar. Sci. 9: 875653. https://dx.doi.org/10.3389/fmars.2022.875653, meer
  • Peer reviewed article Masina, S.; Counillon, F.; Grégoire, M.; Storto, A.; Tsujino, H. (2022). Editorial: past reconstruction of the physical and biogeochemical ocean state. Front. Earth Sci. 10: 890370. https://dx.doi.org/10.3389/feart.2022.890370, meer
  • Peer reviewed article Robinet, S.; Matossian, A.O.; Capet, A.; Chou, L.; Fontaine, F.; Grégoire, M.; Lepoint, G.; Piotrowska, N.; Plante, A.; Romin, O.R.; Fagel, N. (2022). A multi-proxy approach to reconstruct hypoxia on the NW Black Sea shelf over the Holocene. J. Mar. Sci. Eng. 10(3): 319. https://dx.doi.org/10.3390/jmse10030319, meer
  • Peer reviewed article Ciliberti, S.A.; Grégoire, M.; Staneva, J.; Palazov, A.; Coppini, G.; Lecci, R.; Peneva, E.; Matreata, M.; Marinova, V.; Masina, S.; Pinardi, N.; Jansen, E.; Lima, L.; Aydogdu, A.; Cretì, S.; Stefanizzi, L.; Azevedo, D.; Causi, S.; Vandenbulcke, L.; Capet, A.; Meulders, C.; Ivanov, E.; Behrens, A.; Ricker, M.; Gayer, G.; Palermo, F.; Ilicak, M.; Gunduz, M.; Valcheva, N.; Agostini, P. (2021). Monitoring and forecasting the ocean state and biogeochemical processes in the Black Sea: recent developments in the Copernicus Marine Service. J. Mar. Sci. Eng. 9(10): 1146. https://dx.doi.org/10.3390/jmse9101146, meer
  • Peer reviewed article De Borger, E.; Ivanov, E.; Capet, A.; Braeckman, U.; Vanaverbeke, J.; Grégoire, M.; Soetaert, K. (2021). Offshore windfarm footprint of sediment organic matter mineralization processes. Front. Mar. Sci. 8: 632243. https://dx.doi.org/10.3389/fmars.2021.632243, meer
  • Peer reviewed article Estes Jr., M.; Anderson, C.; Appeltans, W.; Bax, N.; Bednaršek, N.; Canonico, G.; Djavidnia, S.; Escobar, E.; Fietzek, P.; Gregoire, M.; Hazen, E.; Kavanaugh, M.; Lejzerowicz, F.; Lombard, F.; Miloslavich, P.; Möller, K.O.; Monk, J.; Montes, E.; Moustahfid, H.; Muelbert, M.M.C.; Muller-Karger, F.; Peavey Reeves, L.E.; Satterthwaite, E.V.; Schmidt, J.O.; Sequeira, A.M.M.; Turner, W.; Weatherdon, L.V. (2021). Enhanced monitoring of life in the sea is a critical component of conservation management and sustainable economic growth. Mar. Policy 132: 104699. https://dx.doi.org/10.1016/j.marpol.2021.104699, meer
  • Peer reviewed article Friedland, R.; Macías, D.; Cossarini, G.; Daewel, U.; Estournel, C.; Garcia-Gorriz, E.; Grizzetti, B.; Grégoire, M.; Gustafson, B.; Kalaroni, S.; Kerimoglu, O.; Lazzari, P.; Lenhart, H.; Lessin, G.; Maljutenko, I.; Miladinova, S.; Müller-Karulis, B.; Neumann, T.; Parn, O.; Pätsch, J.; Piroddi, C.; Raudsepp, U.; Schrum, C.; Stegert, C.; Stips, A.; Tsiaras, K.; Ulses, C.; Vandenbulcke, L. (2021). Effects of nutrient management scenarios on marine eutrophication indicators: a pan-European, multi-model assessment in support of the Marine Strategy Framework Directive. Front. Mar. Sci. 8: 596126. https://hdl.handle.net/10.3389/fmars.2021.596126, meer
  • Peer reviewed article Grégoire, M.; Garçon, V.; Garcia, H.; Breitburg, D.; Isensee, K.; Oschlies, A.; Telszewski, M.; Barth, A.; Bittig, H.C.; Carstensen, J.; Carval, T.; Chai, F.; Chavez, F.; Conley, D.; Coppola, L.; Crowe, S.; Currie, K.; Dai, M.; Deflandre, B.; Dewitte, B.; Diaz, R.; Garcia-Robledo, E.; Gilbert, D.; Giorgetti, A.; Glud, R.; Gutiérrez, D.; Hosoda, S.; Ishii, M.; Jacinto, G.; Langdon, C.; Lauvset, S.K.; Levin, L.A.; Limburg, K.E.; Mehrtens, H.; Montes, I.; Naqvi, W.; Paulmier, A.; Pfeil, B.; Pitcher, G.; Pouliquen, S.; Rabalais, N.; Rabouille, C.; Recape, V.; Roman, M.; Rose, K.; Rudnick, D.; Rummer, J.; Schmechtig, C.; Schmidtko, S.; Seibel, B.; Slomp, C.; Sumalia, U.R.; Tanhua, T.; Thierry, V.; Uchida, H.; Wanninkhof, R.; Yasuhara, M. (2021). A global ocean oxygen database and atlas for assessing and predicting deoxygenation and ocean health in the open and coastal ocean. Front. Mar. Sci. 8: 724913. https://dx.doi.org/10.3389/fmars.2021.724913, meer
  • Peer reviewed article Ivanov, E.; Capet, A.; De Borger, E.; Degraer, S.; Delhez, E.; Soetaert, K.; Vanaverbeke, J.; Grégoire, M. (2021). Offshore wind farm footprint on organic and mineral particle flux to the bottom. Front. Mar. Sci. 8: 631799. https://dx.doi.org/10.3389/fmars.2021.631799, meer
  • Peer reviewed article Piroddi, C.; Heymans, J.J.; Macías, D.; Grégoire, M.; Townsend, H. (2021). Editorial: using ecological models to support and shape environmental policy decisions. Front. Mar. Sci. 8: 815313. https://dx.doi.org/10.3389/fmars.2021.815313, meer
  • Peer reviewed article Capet, A.; Fernández, V.; She, J.; Dabrowski, T.; Umgiesser, G.; Staneva, J.; Mészáros, L.; Campuzano, F.; Ursella, L.; Nolan, G.; El Serafy, G. (2020). Operational modeling capacity in European seas - An EuroGOOS perspective and recommendations for improvement. Front. Mar. Sci. 7: 129. https://dx.doi.org/10.3389/fmars.2020.00129, meer
  • Peer reviewed article Capet, A.; Vandenbulcke, L.; Grégoire, M. (2020). A new intermittent regime of convective ventilation threatens the Black Sea oxygenation status. Biogeosciences 17(24): 6507-6525. https://hdl.handle.net/10.5194/bg-17-6507-2020, meer
  • Peer reviewed article Ivanov, E.; Capet, A.; Barth, A.; Delhez, E.J.M.; Soetaert, K.; Grégoire, M. (2020). Hydrodynamic variability in the Southern Bight of the North Sea in response to typical atmospheric and tidal regimes. Benefit of using a high resolution model. Ocean Modelling 154: 101682. https://dx.doi.org/10.1016/j.ocemod.2020.101682, meer
  • Peer reviewed article Ruiz, S.; Claret, M.; Pascual, A.; Olita, A.; Troupin, C.; Capet, A.; Tovar-Sanchez, A.; Allen, J.; Poulain, P.-M.; Tintoré, J.; Mahadevan, A. (2019). Effects of oceanic mesoscale and submesoscale frontal processes on the vertical transport of phytoplankton. JGR: Oceans 124(8): 5999-6014. https://dx.doi.org/10.1029/2019JC015034, meer
  • Peer reviewed article Vandenbulcke, L.; Barth, A. (2019). Upscaling of a local model into a larger-scale model. Ocean Sci. 15(2): 291-305. https://dx.doi.org/10.5194/os-15-291-2019, meer
  • Peer reviewed article Krek, E.V.; Kostianoy, A.G.; Krek, A.V.; Semenov, A.V. (2018). Spatial distribution of oil spills at the sea surface in the Southeastern Baltic Sea according to satellite SAR data. Transport and Telecommunication Journal 19(4): 294-300. https://dx.doi.org/10.2478/ttj-2018-0024, meer
  • Peer reviewed article Olita, A.; Capet, A.; Claret, M.; Mahadevan, A.; Poulain, P.M.; Ribotti, A.; Ruiz, S.; Tintoré, J.; Tovar-Sanchez, A.; Pascual, A. (2017). Frontal dynamics boost primary production in the summer stratified Mediterranean sea. Ocean Dynamics 67(6): 767-782. https://dx.doi.org/10.1007/s10236-017-1058-z, meer
  • Peer reviewed article Pascual, A.; Ruiz, S.; Olita, A.; Troupin, C.; Claret, M.; Casas, B.; Mourre, B.; Poulain, P.M.; Tovar-Sanchez, A.; Capet, A.; Mason, E.; Allen, J.T.; Mahadevan, A.; Tintoré, J. (2017). A multiplatform experiment to unravel meso- and submesoscale processes in an intense front (AlborEx). Front. Mar. Sci. 4: 39. https://dx.doi.org/10.3389/fmars.2017.00039, meer
  • Capet, A.; Mason, E.; Vandenbulcke, L.; Grégoire, M. (2023). Contribution of coastal anticyclones to Black Sea oxygen dynamics, in: EGU General Assembly 2023. Vienna, Austria & Online, 23–28 April 2023. pp. EGU23-17543. https://dx.doi.org/10.5194/egusphere-egu23-17543, meer
  • Ivanov, E.; Vandenbulcke, L.; Grégoire, M. (2023). Using a benthic-pelagic coupled hydrobiogeochemical model to assess long-term carbon storage in the sediment of the Southern Bight of the North Sea, in: Mees, J. et al. Book of abstracts – VLIZ Marine Science Day, 1 March 2023, Bruges. VLIZ Special Publication, 90: pp. 64, meer
  • Randresihaja, R.; Grégoire, M.; Hanert, E. (2023). Understanding the biogeochemical interactions of the Scheldt-North Sea river-ocean-continuum through multiscale modelling, in: Mees, J. et al. Book of abstracts – VLIZ Marine Science Day, 1 March 2023, Bruges. VLIZ Special Publication, 90: pp. 95, meer
  • Ivanov, E.; Capet, A.; Barth, A.; Delhez, E.J.M.; Soetaert, K.; Gregoire, M. (2020). Assessment and optimization of the impact of the future Belgian offshore wind farms on the bottom fauna using numerical modelling, in: Mees, J. et al. Book of abstracts – VLIZ Marine Science Day. Oostende, Belgium, 18 March 2020. VLIZ Special Publication, 84: pp. 59, meer

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