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AGU: Journal of Geophysical Research, Oceans

 

Keywords

  • convection
  • Greenland Sea

Index Terms

  • Geographic Location: Arctic region
  • Oceanography: General: Arctic and Antarctic oceanography
  • Oceanography: Physical: Hydrography and tracers
Abstract
Cited By (3)
 

Abstract

JOURNAL OF GEOPHYSICAL RESEARCH, VOL. 110, C11010, 15 PP., 2005
doi:10.1029/2003JC002156

How to identify winter convection in the Greenland Sea from hydrographic summer data

S. Ronski

Alfred-Wegener-Institut für Polar- und Meeresforschung, Bremerhaven, Germany

G. Budéus

Alfred-Wegener-Institut für Polar- und Meeresforschung, Bremerhaven, Germany

The identification of winter convection depths from later field observations is an often required but not trivial task. We show from field measurements that the effects of winter convection in the Greenland Sea can vary enormously, including such opposite changes as an increase or decrease of temperature, salinity, or stability. Also, small-scale fluctuations in the vertical can grow larger or cease. Commonly used indicators for past convection in the Greenland Sea like overall vertical homogeneity or a freshwater input to deeper layers alone are therefore not reliable to construct a time series of winter convection. We explain this variety of effects with the occurrence of two rather different ventilation scenarios possible in the Greenland Sea. They are exemplified by two winters, using mainly hydrographic observations of the adjoining summers. The observed differences are substantiated by the results of a one-dimensional model. Out of this a multicriteria catalogue is developed, which can be used to determine unambiguously convection depths in the Greenland Sea. The fulfillment of one of the criteria is sufficient to evidence convection, but the suitable criterion may differ from winter to winter. A straightforward indicator proving the absence of winter convection does not exist.

Received 8 October 2003; accepted 25 July 2005; published 17 November 2005.

Citation: Ronski, S., and G. Budéus (2005), How to identify winter convection in the Greenland Sea from hydrographic summer data, J. Geophys. Res., 110, C11010, doi:10.1029/2003JC002156.

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