Article

Wind‐driven upwelling around grounded tabular icebergs

Details

Citation

Stern AA, Johnson E, Holland DM, Wagner TJW, Wadhams P, Bates R, Abrahamsen EP, Nicholls KW, Crawford A, Gagnon J & Tremblay J (2015) Wind‐driven upwelling around grounded tabular icebergs. Journal of Geophysical Research: Oceans, 120 (8), pp. 5820-5835. https://doi.org/10.1002/2015jc010805

Abstract
Temperature and salinity data collected around grounded tabular icebergs in Baffin Bay in 2011, 2012, and 2013 indicate wind-induced upwelling at certain locations around the icebergs. These data suggest that along one side of the iceberg, wind forcing leads to Ekman transport away from the iceberg, which causes upwelling of the cool saline water from below. The upwelling water mixes with the water above the thermocline, causing the mixed layer to become cooler and more saline. Along the opposite side of the iceberg, the surface Ekman transport moves towards the iceberg, which causes a sharpening of the thermocline as warm fresh water is trapped near the surface. This results in higher mixed layer temperatures and lower mixed layer salinities on this side of the iceberg. Based on these in situ measurements, we hypothesize that the asymmetries in water properties around the iceberg, caused by the opposing effects of upwelling and sharpening of the thermocline, lead to differential deterioration around the iceberg. Analysis of satellite imagery around iceberg PII-B-1 reveals differential decay around the iceberg, in agreement with this mechanism.

Keywords
iceberg; upwelling; Ekman

Journal
Journal of Geophysical Research: Oceans: Volume 120, Issue 8

StatusPublished
FundersNSF Polar Programs
Publication date31/08/2015
Publication date online17/07/2015
Date accepted by journal14/07/2015
PublisherAmerican Geophysical Union (AGU)
ISSN2169-9291
eISSN2169-9291

People (1)

Dr Anna Crawford

Dr Anna Crawford

Lecturer in Physical Geography, Biological and Environmental Sciences