Can regulation of freshwater runoff in Hudson Bay affect the climate of the North Atlantic

ABSTRACT. A sequence of phenomena links anthropogenic changes in the timing of freshwater runoff in Hudson Bay to a possible impact on the North Atlantic thermohaline circulation. The chain of events starts with the spreading of estuarine plumes under ice and continues with the effect of lowered sal...

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Bibliographic Details
Main Authors: Paul H. Leblond, John R. Lazier, Andrew J. Weaver
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
Published: 1996
Subjects:
Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.563.5949
http://pubs.aina.ucalgary.ca/arctic/Arctic49-4-348.pdf
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Summary:ABSTRACT. A sequence of phenomena links anthropogenic changes in the timing of freshwater runoff in Hudson Bay to a possible impact on the North Atlantic thermohaline circulation. The chain of events starts with the spreading of estuarine plumes under ice and continues with the effect of lowered salinity on the rate of ice formation, regional effects on the scale of Hudson Bay, the export of freshwater to the Labrador Sea, its impact on deep convection in that area, and the relative importance of such changes to the North Atlantic circulation. At each step we compare anthropogenic effects with other factors and place them within the perspective of natural variability. Our conclusion does not support the contention that freshwater runoff regulation, even of all rivers in the basins of Hudson and James Bays, could have a significant or even a detectable effect on the climate of the North Atlantic. Key words: freshwater regulation, Hudson Bay, climate RÉSUMÉ. Une séquence de phénomènes relie des changements anthropiques dans le moment où les eaux douces commencent à s’écouler dans la baie d’Hudson à leur répercussion possible sur les courants thermiques des eaux marines. La séquence débute par la formation d’un panache estuarien sous la glace et se poursuit avec l’effet de la baisse de salinité sur la vitesse de formation