Landscape evolution and sediment delivery in a High Arctic proglacial lake, Ellesmere Island, Canadian Arctic Archipelago

Author:

Chassiot Léo12ORCID,Lajeunesse Patrick1ORCID,Francus Pierre23ORCID,Normandeau Alexandre4,Lapointe François5ORCID,Massa Charly6,De Coninck Arnaud23

Affiliation:

1. Département de Géographie Université Laval Québec City Québec Canada

2. INRS‐ETE Québec City Québec Canada

3. GEOTOP Montréal Québec Canada

4. Geological Survey of Canada, Natural Resources Canada Dartmouth Nova Scotia Canada

5. Department of Earth, Geographic, and Climate Sciences University of Massachusetts Amherst Massachusetts USA

6. UMR 6298 ARTEHIS Université de Bourgogne Dijon France

Abstract

AbstractGeophysical and morphosedimentary investigations were conducted at Strathcona Lake, a High Arctic proglacial lake and its catchment connected to the Taggart Lake Glacier, northwest corner of the Prince of Wales Icefield in Ellesmere Island (eastern Canadian Arctic Archipelago). The mapping of glaciomarine landforms and units provides, together with updated radiocarbon information, a framework for catchment evolution and sediment delivery to the lake during deglaciation and glacio‐isostatically induced relative sea level fall. A staircase of deltas with descending altitudes provide evidence for a spatially diachronous timing of ice retreat from the catchments around Strathcona Lake. Swath bathymetric mapping coupled with acoustic sediment stratigraphy show draped infills with a transition from marine to rhythmically bedded lacustrine sediments produced by hyperpycnal flows. Multiproxy investigations on a set of sediment cores highlight proglacial varves interrupted by rhythmites resulting from the erosion of fluvially incised glaciomarine sediments stored in the catchment. Pluricentimetric proglacial varves formed during the last century in response to periods of intense glacial melt, notably since the 21st century. The sedimentary record suggests the varved sediments from Strathcona Lake can be used to reconstruct the melting history of the Prince of Wales Icefield. This work provides a geomorphological, sedimentological, and geochemical framework that should guide future varve‐based reconstructions of glacial and climatic variability in Ellesmere Island.

Funder

W. Garfield Weston Foundation

Natural Sciences and Engineering Research Council of Canada

Ministère de l'Éducation, du Loisir et du Sport Québec

Publisher

Wiley

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