Search Results - "Myers, Paul G"

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  1. 1

    Recent increases in Arctic freshwater flux affects Labrador Sea convection and Atlantic overturning circulation by Yang, Qian, Dixon, Timothy H., Myers, Paul G., Bonin, Jennifer, Chambers, Don, van den Broeke, M. R., Ribergaard, Mads H., Mortensen, John

    Published in Nature communications (22-01-2016)
    “…The Atlantic Meridional Overturning Circulation (AMOC) is an important component of ocean thermohaline circulation. Melting of Greenland’s ice sheet is…”
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  2. 2

    Meltwater pathways from marine terminating glaciers of the Greenland ice sheet by Gillard, Laura C., Hu, Xianmin, Myers, Paul G., Bamber, Jonathan L.

    Published in Geophysical research letters (28-10-2016)
    “…The Greenland ice sheet (GrIS) stores the largest amount of freshwater in the Northern Hemisphere and has been recently losing mass at an increasing rate. An…”
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    Winter Mixed Layer Restratification Induced by Vertical Eddy Buoyancy Flux in the Labrador Sea by Li, Pusheng, Chen, Ruiyi, Gou, Ruijian, Pennelly, Clark, Luo, Yiyong, Myers, Paul G.

    Published in Geophysical research letters (16-09-2023)
    “…Numerical model studies have shown that the lateral buoyancy transports from eddies restratify the convection region in the Labrador Sea. However,…”
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    Understanding the Physical Forcings Behind the Biogeochemical Productivity of the Hudson Bay Complex by Deschepper, Inge, Myers, Paul G., Lavoie, Diane, Papakyriakou, Tim, Maps, Fréderic

    “…Multiple factors influence the spatial and temporal chlorophyll‐a concentration of marine systems. The Hudson Bay Complex has historically been seen as a…”
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  6. 6

    Irminger Water variability in the West Greenland Current by Myers, Paul G., Kulan, Nilgun, Ribergaard, Mads H.

    Published in Geophysical research letters (01-09-2007)
    “…We examine the historical variability of Irminger Water (IW) along 3 sections across the West Greenland Current over 1950–2005. Significant variability in the…”
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  7. 7

    Exceptional sea ice loss leading to anomalously deep winter convection north of Svalbard in 2018 by Fu, Chuanshuai, Myers, Paul G.

    Published in Climate dynamics (01-03-2024)
    “…An important question is will deep convection sites, where deep waters are ventilated and air-gas exchange into the deep ocean occurs, emerge in the Arctic…”
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  8. 8

    Water Mass Transformation and Formation in the Labrador Sea by Myers, Paul G., Donnelly, Chris

    Published in Journal of climate (01-04-2008)
    “…Objectively analyzed surface hydrographic fields and NCEP–NCAR reanalysis fluxes are used to estimate water mass transformation and formation rates in the…”
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  9. 9

    Towards an understanding of Labrador Sea salinity drift in eddy-permitting simulations by Rattan, Sanjay, Myers, Paul G., Treguier, Anne-Marie, Theetten, Sebastien, Biastoch, Arne, Böning, Claus

    Published in Ocean modelling (Oxford) (2010)
    “…Model drift in the Labrador Sea in eddy permitting model simulations is examined using a series of configurations based on the NEMO numerical framework. There…”
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  10. 10

    Water mass modification and mixing rates in a 1/12° simulation of the Canadian Arctic Archipelago by Hughes, Kenneth G., Klymak, Jody M., Hu, Xianmin, Myers, Paul G.

    Published in Journal of geophysical research. Oceans (01-02-2017)
    “…Strong spatial differences in diapycnal mixing across the Canadian Arctic Archipelago are diagnosed in a 1/12° basin‐scale model. Changes in mass flux between…”
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    Modelling the Oceanic Advection of Pollutants Spilt Along with the Northwest Passage by Tao, Ran, Myers, Paul G.

    Published in Atmosphere-ocean (15-03-2022)
    “…The Arctic sea ice is dramatically retreating in concentration, thickness, and duration. The larger and longer-lasting periods of open water will likely lead…”
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  12. 12
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    The Influence of High-Frequency Atmospheric Forcing on the Circulation and Deep Convection of the Labrador Sea by Holdsworth, Amber M., Myers, Paul G.

    Published in Journal of climate (15-06-2015)
    “…The influence of high-frequency atmospheric forcing on the circulation of the North Atlantic Ocean with emphasis on the deep convection of the Labrador Sea was…”
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  14. 14

    Numerical Investigation of Diapycnal Mixing of the Kitikmeot Sea in the Southern Canadian Arctic Archipelago by Afsharipour, Yasaman, Xu, Chengzhu, Myers, Paul G., Else, Brent, Zhou, Qi

    Published in Atmosphere-ocean (26-05-2024)
    “…Utilizing a $1/12^\circ$ 1 / 12 ∘ numerical model, we examine the diapycnal mixing patterns in the Kitikmeot Sea, a semi-enclosed water body within the…”
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  15. 15

    Pacific Water Pathway in the Arctic Ocean and Beaufort Gyre in Two Simulations With Different Horizontal Resolutions by Hu, Xianmin, Myers, Paul G., Lu, Youyu

    Published in Journal of geophysical research. Oceans (01-08-2019)
    “…A set of numerical simulations (with horizontal resolutions of 1/4° and 1/12°) is conducted to study the Pacific Water pathway in the Arctic Ocean and the…”
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  16. 16

    Separating the influence of projected changes in air temperature and wind on patterns of sea level change and ocean heat content by Saenko, Oleg A., Yang, Duo, Gregory, Jonathan M., Spence, Paul, Myers, Paul G.

    Published in Journal of geophysical research. Oceans (01-08-2015)
    “…We present ocean model sensitivity experiments aimed at separating the influence of the projected changes in the “thermal” (near‐surface air temperature) and…”
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  17. 17

    Cascading off the West Greenland Shelf: A numerical perspective by Marson, Juliana M., Myers, Paul G., Hu, Xianmin, Petrie, Brian, Azetsu‐Scott, Kumiko, Lee, Craig M.

    Published in Journal of geophysical research. Oceans (01-07-2017)
    “…Cascading of dense water from the shelf to deeper layers of the adjacent ocean basin has been observed in several locations around the world. The West…”
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    Using Vertically Integrated Ocean Fields to Characterize Greenland Icebergs' Distribution and Lifetime by Marson, Juliana M., Myers, Paul G., Hu, Xianmin, Le Sommer, Julien

    Published in Geophysical research letters (16-05-2018)
    “…Icebergs represent approximately half of Greenland's yearly mass loss, having important implications for biological productivity, freshwater fluxes in the…”
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    The role of Arctic gateways on sea ice and circulation in the Arctic and North Atlantic Oceans: a sensitivity study with an ocean-sea-ice model by Karami, Mehdi Pasha, Myers, Paul G., de Vernal, Anne, Tremblay, L. Bruno, Hu, Xianmin

    Published in Climate dynamics (01-10-2021)
    “…The impact of changes in volume, heat and freshwater fluxes through Arctic gateways on sea ice, circulation and fresh water and heat contents of the Arctic and…”
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  20. 20

    Revisiting the Circulation of Hudson Bay: Evidence for a Seasonal Pattern by Ridenour, Natasha A., Hu, Xianmin, Sydor, Kevin, Myers, Paul G., Barber, David G.

    Published in Geophysical research letters (16-04-2019)
    “…The Hudson Bay Complex is the outlet for many Canadian rivers, receiving roughly 900 km3/year of river runoff. Historically, studies found a consistent…”
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