Accesso libero

Marked contrast in wind-driven upwelling on the southeastern Nova Scotia coast in July of two years differing in ENSO conditions

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Bakun, A. (1973). Coastal upwelling indices, west coast of North America, 1946-71. Seattle: US Department of Commerce, National Oceanic and Atmospheric Administration, National Marine Fisheries Service, Technical Report NMFS SSRF-671. Bakun A. 1973 Coastal upwelling indices, west coast of North America, 1946-71 Seattle US Department of Commerce, National Oceanic and Atmospheric Administration, National Marine Fisheries Service, Technical Report NMFS SSRF-671Search in Google Scholar

Castelao, R.M. & Barth, J.A. (2006). Upwelling around Cabo Frio, Brazil: the importance of wind stress curl. Geophysical Research Letters 33: L03602. Castelao R.M. & Barth J.A. 2006 Upwelling around Cabo Frio, Brazil: the importance of wind stress curl Geophysical Research Letters 33 L0360210.1029/2005GL025182Search in Google Scholar

Chegini, F., Lu, Y., Katavouta, A. & Ritchie, H. (2018). Coastal upwelling o southwest Nova Scotia simulated with a high-resolution baroclinic ocean model. Journal of Geophysical Research: Oceans 123: 2318–2331. Chegini F. Lu Y. Katavouta A. & Ritchie H. 2018 Coastal upwelling o southwest Nova Scotia simulated with a high-resolution baroclinic ocean model Journal of Geophysical Research: Oceans 123 2318 233110.1002/2017JC013431Search in Google Scholar

Costa Goela, P., Cordeiro, C., Danchenko, S., Icely, J., Cristina, S. & et al. (2016). Time series analysis of data for sea surface temperature and upwelling components from the southwest coast of Portugal. Journal of Marine Systems 163: 12–22. Costa Goela P. Cordeiro C. Danchenko S. Icely J. Cristina S. & et al 2016 Time series analysis of data for sea surface temperature and upwelling components from the southwest coast of Portugal Journal of Marine Systems 163 12 2210.1016/j.jmarsys.2016.06.002Search in Google Scholar

FAO (2018). The state of world fisheries and aquaculture 2018. Rome: Food and Agriculture Organization of the United Nations. FAO 2018 The state of world fisheries and aquaculture 2018 Rome Food and Agriculture Organization of the United NationsSearch in Google Scholar

Demarcq, H. (1998). Spatial and temporal dynamic of the upwelling o Senegal and Mauritania: local change and trend. In M.-H. Durand, P. Cury, R. Mendelssohn, C. Roy, A. Bakun & D. Pauly (Eds.) Global versus local changes in upwelling systems (pp. 149–165). Paris: Orstom. Demarcq H. 1998 Spatial and temporal dynamic of the upwelling o Senegal and Mauritania: local change and trend DurandM.-H. CuryP. MendelssohnR. RoyC. BakunA. & PaulyD. Global versus local changes in upwelling systems 149 165 Paris OrstomSearch in Google Scholar

George, S.S. & Wolfe, S.A. (2009). El Niño stills winter winds across the southern Canadian Prairies. Geophysical Research Letters 36: article L23806. George S.S. & Wolfe S.A. 2009 El Niño stills winter winds across the southern Canadian Prairies Geophysical Research Letters 36 L2380610.1029/2009GL041282Search in Google Scholar

Government of Canada (2019). Past weather and climate. Available from: http://climate.weather.gc.ca/historical_data/search_historic_data_e.html (accessed: 22 May 2019). Government of Canada 2019 Past weather and climate Available from http://climate.weather.gc.ca/historical_data/search_historic_data_e.html (accessed: 22 May 2019)Search in Google Scholar

Iwasaki, S., Isobe, A. & Miyao, Y. (2015). Fortnightly atmospheric tides forced by spring and neap tides in coastal waters. Scientifi c Reports 5: article 10167. Iwasaki S. Isobe A. & Miyao Y. 2015 Fortnightly atmospheric tides forced by spring and neap tides in coastal waters Scientifi c Reports 5 1016710.1038/srep10167443500525984948Search in Google Scholar

Kämpf, J. & Chapman, P. (2016). Upwelling systems of the world. A scientifi c journey to the most productive marine ecosystems. Cham: Springer. Kämpf J. & Chapman P. 2016 Upwelling systems of the world. A scientifi c journey to the most productive marine ecosystems Cham Springer10.1007/978-3-319-42524-5Search in Google Scholar

Kang, K.R. & Lee, S.R. (2014). Variation of the summer low SST area in the southwestern coast of Korea. Geosciences Journal 18: 231–239. Kang K.R. & Lee S.R. 2014 Variation of the summer low SST area in the southwestern coast of Korea Geosciences Journal 18 231 23910.1007/s12303-013-0055-6Search in Google Scholar

Menge, B.A. & Menge, D.N.L. (2013). Dynamics of coastal meta-ecosystems: the intermittent upwelling hypothesis and a test in rocky intertidal regions. Ecological Monographs 83: 283–310. Menge B.A. & Menge D.N.L. 2013 Dynamics of coastal meta-ecosystems: the intermittent upwelling hypothesis and a test in rocky intertidal regions Ecological Monographs 83 283 31010.1890/12-1706.1Search in Google Scholar

NOAA (2019). National Weather Service’s Climate Prediction Center. Cold and warm episodes by season. Available from: http://origin.cpc.ncep.noaa.gov/products/analysis_monitoring/ensostuff/ONI_v5.php (accessed: 22 May 2019). NOAA 2019 National Weather Service’s Climate Prediction Center. Cold and warm episodes by season Available from http://origin.cpc.ncep.noaa.gov/products/analysis_monitoring/ensostuff/ONI_v5.php (accessed: 22 May 2019)Search in Google Scholar

Petrie, B., Topliss, B.J. & Wright, D.G. (1987). Coastal upwelling and eddy development o Nova Scotia. Journal of Geophysical Research 29(C12): 12979–12991. Petrie B. Topliss B.J. & Wright D.G. 1987 Coastal upwelling and eddy development o Nova Scotia Journal of Geophysical Research 29C12 12979 1299110.1029/JC092iC12p12979Search in Google Scholar

Philander, S.G. (1990). El Niño, La Niña, and the Southern Oscillation. San Diego: Academic Press. Philander S.G. 1990 El Niño, La Niña, and the Southern Oscillation San Diego Academic PressSearch in Google Scholar

Ramanantsoa, J.D., Kruga, M., Penven, P., Rouault, M. & Gula, J. (2018). Coastal upwelling south of Madagascar: temporal and spatial variability. Journal of Marine Systems 178: 29–37. Ramanantsoa J.D. Kruga M. Penven P. Rouault M. & Gula J. 2018 Coastal upwelling south of Madagascar: temporal and spatial variability Journal of Marine Systems 178 29 3710.1016/j.jmarsys.2017.10.005Search in Google Scholar

Reyes-Mendoza, O., Mariño-Tapia, I., Herrera-Silveira, J., Ruiz-Martínez, G., Enriquez, C. & Largier, J.L. (2016). The effects of wind on upwelling o Cabo Catoche. Journal of Coastal Research 32: 638–650. Reyes-Mendoza O. Mariño-Tapia I. Herrera-Silveira J. Ruiz-Martínez G. Enriquez C. & Largier J.L. 2016 The effects of wind on upwelling o Cabo Catoche Journal of Coastal Research 32 638 65010.2112/JCOASTRES-D-15-00043.1Search in Google Scholar

Schwing, F.B., O’Farrell, M., Steger, J.M. & Baltz, K. (1996). Coastal upwelling indices, west coast of North America, 1946-95. Pacific Grove: US Department of Commerce, National Oceanic and Atmospheric Administration, National Marine Fisheries Service, Technical Memorandum NMFS-SWFSC-231. Schwing F.B. O’Farrell M. Steger J.M. & Baltz K. 1996 Coastal upwelling indices, west coast of North America, 1946-95 Pacific Grove US Department of Commerce, National Oceanic and Atmospheric Administration, National Marine Fisheries Service, Technical Memorandum NMFS-SWFSC-231Search in Google Scholar

Shan, S., Sheng, J., Ohashi, K. & Dever, M. (2016). Assessing the performance of a multi-nested ocean circulation model using satellite remote sensing and in-situ observations. Satellite Oceanography and Meteorology 1: 39–59. Shan S. Sheng J. Ohashi K. & Dever M. 2016 Assessing the performance of a multi-nested ocean circulation model using satellite remote sensing and in-situ observations Satellite Oceanography and Meteorology 1 39 5910.18063/SOM.2016.01.004Search in Google Scholar

Shanks, A.L., Morgan, S.G., MacMahan, J., Reniers, A.J.H.M., Jarvis, M., et al. (2014). Onshore transport of plankton by internal tides and upwelling-relaxation events. Marine Ecology Progress Series 502: 39–51. Shanks A.L. Morgan S.G. MacMahan J. Reniers A.J.H.M. Jarvis M. et al 2014 Onshore transport of plankton by internal tides and upwelling-relaxation events Marine Ecology Progress Series 502 39 5110.3354/meps10717Search in Google Scholar

Smale, D.A. & Wernberg, T. (2009). Satellite-derived SST data as a proxy for water temperature in nearshore benthic ecology. Marine Ecology Progress Series 387: 27–37. Smale D.A. & Wernberg T. 2009 Satellite-derived SST data as a proxy for water temperature in nearshore benthic ecology Marine Ecology Progress Series 387 27 3710.3354/meps08132Search in Google Scholar

SmartAtlantic (2019). Halifax (Herring Cove) buoy. Available from: http://www.smartatlantic.ca/halifax/buoy.php(accessed 22 May 2019). SmartAtlantic 2019 Halifax (Herring Cove) buoy Available from http://www.smartatlantic.ca/halifax/buoy.php (accessed: 22 May 2019)Search in Google Scholar

Sokal, R.R. & Rohlf, F.J. (2012). Biometry. The principles and practice of statistics in biological research. New York: W. H. Freeman. Sokal R.R. & Rohlf F.J. 2012 Biometry. The principles and practice of statistics in biological research New York W. H. FreemanSearch in Google Scholar

Stewart, R.H. (2008). Introduction to physical oceanography. Open Textbook Library. Available from: https://open.umn.edu/opentextbooks/bookdetail.aspx?bookid=20(accessed 22 May 2019). Stewart R.H. 2008 Introduction to physical oceanography Open Textbook Library. Available from https://open.umn.edu/opentextbooks/bookdetail.aspx?bookid=20 (accessed: 22 May 2019)Search in Google Scholar

Tee, K.T., Smith, P.C. & LeFaivre, D. (1993). Topographic upwelling o southwest Nova Scotia. Journal of Physical Oceanography 23: 1703–1726. Tee K.T. Smith P.C. & LeFaivre D. 1993 Topographic upwelling o southwest Nova Scotia Journal of Physical Oceanography 23 1703 172610.1175/1520-0485(1993)023<1703:TUOSNS>2.0.CO;2Search in Google Scholar

Tide and Current Predictor (2019). Tidal height and current site selection. Available from: http://tbone.biol.sc.edu/tide/index.html (accessed: 22 May 2019). Tide and Current Predictor 2019 Tidal height and current site selection Available from http://tbone.biol.sc.edu/tide/index.html (accessed: 22 May 2019)Search in Google Scholar

Timmermann, A., An, S., Kug, J.S., Jin, F.F., Cai, W. et al. (2018). El Niño–Southern Oscillation complexity. Nature 559: 535–545. Timmermann A. An S. Kug J.S. Jin F.F. Cai W. et al 2018 El Niño–Southern Oscillation complexity Nature 559 535 54510.1038/s41586-018-0252-6Search in Google Scholar

Varela, R., Lima, F.P., Seabra, R., Meneghesso, C. & Gómez-Gesteira, M. (2018). Coastal warming and wind-driven upwelling: a global analysis. Science of the Total Environment 639: 1501–1511. Varela R. Lima F.P. Seabra R. Meneghesso C. & Gómez-Gesteira M. 2018 Coastal warming and wind-driven upwelling: a global analysis Science of the Total Environment 639 1501 151110.1016/j.scitotenv.2018.05.273Search in Google Scholar

Whan, K. & Zwiers, F. (2017). The impact of ENSO and the NAO on extreme winter precipitation in North America in observations and regional climate models. Climate Dynamics 48: 1401–1411. Whan K. & Zwiers F. 2017 The impact of ENSO and the NAO on extreme winter precipitation in North America in observations and regional climate models Climate Dynamics 48 1401 141110.1007/s00382-016-3148-xSearch in Google Scholar

Wu, Z. & Lin, H. (2012). Interdecadal variability of the ENSO–North Atlantic Oscillation connection in boreal summer. Quarterly Journal of the Royal Meteorological Society 138: 1668–1675. Wu Z. & Lin H. 2012 Interdecadal variability of the ENSO–North Atlantic Oscillation connection in boreal summer Quarterly Journal of the Royal Meteorological Society 138 1668 167510.1002/qj.1889Search in Google Scholar

eISSN:
1897-3191
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Chemistry, other, Geosciences, Life Sciences