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Simulated eddy induced vertical velocities in a Gulf of Alaska model
Authors:Shannon H Nudds  Jennifer A Shore
Institution:aBedford Institute of Oceanography, P.O. Box 1006, Mail Stn. B435, Dartmouth, NS, Canada B2Y 4A2;bRoyal Military College of Canada, Physics, POB 17000 STN FORCES, Kingston, ON, Canada K7K 7B4
Abstract:Mesoscale eddies can distribute nutrients, heat and fresh water into the Gulf of Alaska (GOA) from the coastal margins. While many studies have investigated the physical characteristics of GOA eddies, their effects on passive-dispersive particles have not been previously simulated to investigate eddy induced upwelling. A climatologically forced Parallel Ocean Program simulation of the north Pacific Ocean with an online particle tracking scheme was used to simulate passive-dispersive particles in the Gulf of Alaska. In-eddy vertical Lagrangian velocities of the particles were calculated both inside and outside the eddies and showed upwelling rates are generally greater inside the eddies where the vertical velocities of the particles ranged from 0.2 to 0.7 m/day.
Keywords:Mesoscale eddies  Lagrangian particle tracking  Gulf of Alaska
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