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Dynamics of the Mackenzie River plume on the inner Beaufort shelf during an open water period in summer
Authors:Ryan P. Mulligan  Will Perrie  Steve Solomon
Affiliation:1. Department of Geological Sciences and the Institute for Coastal Science and Policy, East Carolina University, 391 Flanagan Blgd, Greenville, NC 27858, United States;2. Fisheries and Oceans Canada, Bedford Institute of Oceanography, 1 Challenger Dr., Dartmouth, NS, B2Y 4A2, Canada;3. Natural Resources Canada, Geological Survey of Canada (Atlantic), 1 Challenger Dr., Dartmouth, NS, B2Y 4A2, Canada
Abstract:The oceanographic conditions of the Mackenzie River plume in the Arctic Ocean were examined during a 12-day period in August 2007. Field observations in the river channel and the delta region (2–6 m depth), ship-based observations on the shelf and satellite observations of sea surface temperatures indicate that movements of plume density fronts cause changes in water temperatures of over 10  C over a few days. We used a 1D model to compare the strength of stratification versus surface wind stress, and a 3D numerical model to simulate the plume motions under forcing from the river flows, local wind and water level variations from tides and wind-driven surge. The results indicate that the coastal region is stratified with a ∼2 m thick surface plume even in water depths of 3–4 m, resulting in strong vertical variation of horizontal currents. Moderate easterly winds of 5–10 m/s are sufficient to induce offshore transport of the surface plume and onshore transport of the deeper shelf water, leading to large fluctuations in temperature and salinity in the coastal region. This study examined a period of offshore transport and mean water level set-down, and indicates the rapid response of the plume to wind over the shallow delta.
Keywords:river plumes   coastal circulation   Arctic environments   stratification
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