Artigos Internacionais
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1 2019) Hydrodynamics of river plume intrusion into an adjacent estuary: The Minho River and Ria de Vigo.

Des M., deCastro M., Sousa M.C., Dias J.M, Gómez-Gesteira M. (2019) Hydrodynamics of river plume intrusion into an adjacent estuary: The Minho River and Ria de Vigo. Journal Of Marine Systems, 189, 87-97. 

Link: https://www.sciencedirect.com/science/article/pii/S0924796318301519?via%3Dihub

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2 (2019) Evaluation of long-term estuarine vegetation changes through Landsat imagery.

Lopes C.L., Mendes R., Caçador I., Dias J.M. (2019) Evaluation of long-term estuarine vegetation changes through Landsat imagery. Science Of The Total Environment, 653, 512-522.

Link: https://www.sciencedirect.com/science/article/pii/S0048969718342815

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3 (2018) Subtidal variability of the Tagus river plume in winter 2013.

Vaz N., Rodrigues J.G., Mateus M., Franz G., Campuzano F., Neves R., Dias J.M. (2018) Subtidal variability of the Tagus river plume in winter 2013. Science Of Total Environment. 627, 1353-1362.

Link: https://doi.org/10.1016/j.scitotenv.2018.01.325

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4 (2018) On the accuracy of CORDEX RCMs to project future winds over the Iberian Peninsula and surrounding ocean.

Santos F., Gomez-Gesteira M., deCastro M., Anel J.A., Carvalho D., Costoya X., Dias J.M. (2018) On the accuracy of CORDEX RCMs to project future winds over the Iberian Peninsula and surrounding ocean. APPLIED ENERGY, 228, 289-300. 

Link: https://www.sciencedirect.com/science/article/pii/S0306261918309589?via%3Dihub

 

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5 (2018) Integrated highresolution numerical model for the NW Iberian Peninsula coast and main estuarine systems.

Sousa, M.C.; Ribeiro, A.S.; Des, M.; Mendes, R.; Alvarez, I.; Gomez-Gesteira, M., and Dias, J.M., 2018. Integrated highresolution numerical model for the NW Iberian Peninsula coast and main estuarine systems. Journal of Coastal Research, Special Issue No. 85, pp. 66-70.

Link: Artigo para download

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6 (2018) Climate change effects on suspended sediment dynamics in a coastal lagoon: Ria de Aveiro (Portugal).

Costa, S.; Picado, A.; Vaz, N.; Coelho, C.; Portela, L., and Dias, J.M., 2018. Climate change effects on suspended sediment dynamics in a coastal lagoon: Ria de Aveiro (Portugal). Journal of Coastal Research, Special Issue No. 85, pp. 521–525.

Link: Artigo para download 

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7 (2018) Assessment of Dredging/Dumping Scenarios for Figueira da Foz Coastal Region (W Portugal).

Fernández-Fernández, S.; Silva, P.A.; Ferreira, C.; Ribeiro, A.S.; Abreu, T.; Romão, S.; Baptista, P.; Fontán-Bouzas, A.; Dias, J.M..; Coelho, C., and Bernardes, C. 2018. Assessment of Dredging/Dumping Scenarios for Figueira da Foz Coastal Region (W Portugal). Journal of Coastal Research, Special Issue No. 85, pp. 1266-1270.

Link: Artigo para download

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8 (2018) Functional and ecophysiological traits of Halimione portulacoides and Sarcocornia perennis ecotypes in Mediterranean salt marshes under different tidal exposures.

Duarte B., Silva H., Dias J.M., Sleimi N., Marques J.C., Cacador I. (2018) Functional and ecophysiological traits of Halimione portulacoides and Sarcocornia perennis ecotypes in Mediterranean salt marshes under different tidal exposures. ECOLOGICAL RESEARCH, 33, ( 6), 1145-1156.

Link: https://onlinelibrary.wiley.com/doi/full/10.1007/s11284-018-1632-y

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9 (2017) Will Climate Change Endangers the Current Mussel Production in the Rias Baixas (Galicia, Spain)?

Silva A.F., Sousa, M.C., Bernardes, C., Dias, J.M. (2017) Will Climate Change Endangers the Current Mussel Production in the Rias Baixas (Galicia, Spain)? HSOA Journal of Aquaculture and Fisheries 1: 001.

Link: http://www.heraldopenaccess.us/fulltext/Aquaculture-&-Fisheries/Will-Climate-Change-Endangers-the-Current-Mussel-Production-in-the-Rias-Baixas-(Galicia-Spain).pdf

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10 (2017) Why coastal upwelling is expected to increase along the western Iberian Peninsula over the next century?.

Sousa M.C., Decastro M., Alvarez I., Gomez-Gesteira M., Dias J.M. (2017) Why coastal upwelling is expected to increase along the western Iberian Peninsula over the next century?. Science Of The Total Environment. 592, 243-251.

Link: http://dx.doi.org/10.1016/j.scitotenv.2017.03.046

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11 (2017) Seasonality of coastal upwelling trends under future warming scenarios along the southern limit of the canary upwelling system.

Sousa M.C., Alvarez I., deCastro M., Gomez-Gesteira M., Dias J.M. (2017) Seasonality of coastal upwelling trends under future warming scenarios along the southern limit of the canary upwelling system. Progress In Oceanography. 153, 16-23.

Link: http://www.sciencedirect.com/science/article/pii/S007966111630132X

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12 (2017) Seasonal and interannual variability of the Douro turbid river plume, northwestern Iberian Peninsula.

Mendes R., Saldías G.S., deCastro M., Gómez-Gesteira M., Vaz N., Dias J.M. (2017) Seasonal and interannual variability of the Douro turbid river plume, northwestern Iberian Peninsula. Remote Sensing Of Environment. 194, 401-411. 

Link: http://dx.doi.org/10.1016/j.rse.2017.04.001

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13 (2017) Revisiting the outwelling hypothesis: Modelling salt marsh detrital metal exports under extreme climatic events.

Duarte B., Vaz N., Valentim J.M., Dias J.M., Silva H., Marques J.C., Sleimi N., Cacador I. (2017) Revisiting the outwelling hypothesis: Modelling salt marsh detrital metal exports under extreme climatic events. Marine Chemistry. 191, 24-33. 

Link: http://dx.doi.org/10.1016/j.marchem.2016.12.002

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14 (2017) Intertidal seagrass models: insights towards the development and implementation of a desiccation module.

Azevedo A., Lillebø A.I., Silva J.L., Dias J.M. (2017) Intertidal seagrass models: insights towards the development and implementation of a desiccation module. Ecological Modelling. 354, 20-25.

Link: http://www.sciencedirect.com/science/article/pii/S0304380016308079

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15 (2017) Influence of main forcing affecting the Tagus turbid plume under high river discharges using MODIS imagery.

Fernández-Nóvoa D., Gomez-Gesteira M., Mendes R., deCastro M., Vaz N., Dias J.M. (2017) Influence of main forcing affecting the Tagus turbid plume under high river discharges using MODIS imagery. Plos One. 12, 10.

Linhk: https://doi.org/10.1371/journal.pone.0187036

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16 (2017) Flood risk assessment in a coastal lagoon under present and future scenarios: Ria de Aveiro case study.

Lopes C.L., Alves F.L., Dias J.M. (2017) Flood risk assessment in a coastal lagoon under present and future scenarios: Ria de Aveiro case study. Natural Hazards. 89, 3, 1307-1325.

Link: http://dx.doi.org/10.1007/s11069-017-3025-x

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17 (2017) Challenges for the WFD second management cycle after the implementation of a regional multi-municipality sanitation system in a coastal lagoon (Ria de Aveiro, Portugal).

Lopes M.L., Marques B., Dias J.M., Soares A.M.V.M., Lillebo A.I. (2017) Challenges for the WFD second management cycle after the implementation of a regional multi-municipality sanitation system in a coastal lagoon (Ria de Aveiro, Portugal). Science Of The Total Environment. 586, 215-225.

Link: http://dx.doi.org/10.1016/j.scitotenv.2017.01.205

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18 (2017) An evaluation of climate change effects in estuarine salinity patterns: application to Ria de Aveiro shallow water system.

Vargas C.I.C., Vaz N., Dias J.M. (2017) An evaluation of climate change effects in estuarine salinity patterns: application to Ria de Aveiro shallow water system. Estuarine, Coastal And Shelf Science. 189, 33-45.

Link: http://www.sciencedirect.com/science/article/pii/S027277141730238X

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19 (2016) Upwelling and Chl-a spatio-temporal variability along the Galician coast: dependence on circulation weather types.

Picado A., Lorenzo M.N., Alvarez I., deCastro M., Vaz N., Dias J.M. (2016) Upwelling and Chl-a spatio-temporal variability along the Galician coast: dependence on circulation weather types. International Journal Of Climatology, 36, 3280-3296.

Link: http://onlinelibrary.wiley.com/doi/10.1002/joc.4555/epdf

 

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20 (2016) Thriving of Zostera noltei (Z. noltii) under intertidal conditions: implications for the modelling of seagrass populations.

Azevedo A., Dias J.M., Lillebø A.I. (2016) Thriving of Zostera noltei (Z. noltii) under intertidal conditions: implications for the modelling of seagrass populations. Marine Biology. 163, 1-8. 

Link:  http://dx.doi.org/10.1007/s00227-016-2887-x

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