Effects of mid-Holocene river runoff on the Arctic ocean/sea-ice system: a numerical model study

Recent geological studies have revealed that the freshwater input to the Arctic Ocean was highly variable during the Holocene. In the present study, the influence of mid-Holocene river runoff on large-scale Arctic ocean/sea-ice dynamics is examined using a general circulation model. A palaeohydrolog...

Full description

Bibliographic Details
Published in:The Holocene
Main Authors: Prange, Matthias, Lohmann, Gerrit
Format: Article in Journal/Newspaper
Language:English
Published: SAGE Publications 2003
Subjects:
Online Access:http://dx.doi.org/10.1191/0959683603hl626rp
http://journals.sagepub.com/doi/pdf/10.1191/0959683603hl626rp
Description
Summary:Recent geological studies have revealed that the freshwater input to the Arctic Ocean was highly variable during the Holocene. In the present study, the influence of mid-Holocene river runoff on large-scale Arctic ocean/sea-ice dynamics is examined using a general circulation model. A palaeohydrological forcing for the time interval around 6 ka BP ( 14 C timescale) is constructed by compiling data from the available literature. Keeping all other forcing fields and bottom topography of the ocean model at present-day values, the effect of a changed freshwater input to the Arctic Ocean is isolated. The model shows that freshwater supply is vitally important for the polar oceanic circulation. In particular, a close connection between Siberian river runoff and the path of the Transpolar Drift (TPD) is found. Consistent with palaeoceanographic findings of driftwood delivery to the Canadian Arctic Archipelago and Baffin Bay, the model results suggest that enhanced freshwater discharge during the mid-Holocene caused an eastward shift of the TPD with strengthened outflow through Fram Strait.