1975Canadian Journal of Earth SciencesRequires access

Stratigraphical Studies on the Shoreline Displacement of Lake Superior

Matti Saarnisto

Open publisher page 59 citations

Abstract

Shoreline displacement in the Lake Superior basin was followed, independently of morphological data, by studying sediments of small lake basins at different elevations in the vicinity of Sault Ste. Marie, Wawa, and Marathon, Ontario. Emergence of small lakes, resulting from water level changes in the main basin, is documented in bottom sediments, and can be dated by radiocarbon and pollen analyses. The new stratigraphical findings were correlated with the earlier established morphological shorelines, and thus the Late Wisconsinan and Holocene history of lake levels was worked out.High post-Main Algonquin glacial lakes formed the highest shorelines along the east shore from Sault Ste. Marie up to Alona Bay between approximately 11 000 and over 10 100 B.P. Contemporaneously a series of Post-Duluth glacial lakes occupied the western Superior basin, subsequent to Glacial Lake Duluth. As the ice retreated to the north shore at 9500 B.P., Lake Minong came into existence. Its level was apparently controlled by a threshold higher than the present at Sault Ste. Marie. The water level of Lake Superior fell to the low water Houghton stage by 8000 B.P. The transgression which resulted in the Nipissing Great Lakes reached the Superior basin about 7000 B.P. and culminated 5500 B.P. Land uplift on the east shore of Lake Superior was very rapid immediately after the deglaciation, followed by decreasing rates up to the present, and there are all indications that the process has been continuous.

About this research paper

What this paper is about

Shoreline displacement in the Lake Superior basin was followed, independently of morphological data, by studying sediments of small lake basins at different elevations in the vicinity of Sault Ste. Marie, Wawa, and Marathon, Ontario. Emergence of small lakes, resulting from water level changes in the main basin, is documented in bottom sediments, and can be dated by radiocarbon and pollen analyses. The new stratigraphical findings were correlated with the earlier established morphological shorelines, and thus the Late Wisconsinan and Holocene history of lake levels was worked out.High post-Main Algonquin glacial lakes formed the highest shorelines along the east shore from Sault Ste. Marie up to Alona Bay between approximately 11 000 and over 10 100 B.P. Contemporaneously a series of Post-Duluth glacial lakes occupied the western Superior basin, subsequent to Glacial Lake Duluth. As the ice retreated to the north shore at 9500 B.P., Lake Minong came into existence. Its level was apparently controlled by a threshold higher than the present at Sault Ste. Marie. The water level of Lake Superior fell to the low water Houghton stage by 8000 B.P. The transgression which resulted in the Nipissing Great Lakes reached the Superior basin about 7000 B.P. and culminated 5500 B.P. Land uplift on the east shore of Lake Superior was very rapid immediately after the deglaciation, followed by decreasing rates up to the present, and there are all indications that the process has been continuous.

Why it matters

OpenAlex reports 59 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Shoreline displacement in the Lake Superior basin was followed, independently of morphological data, by studying sediments of small lake basins at different elevations in the vicinity of Sault Ste. Marie, Wawa, and Marathon, Ontario. Emergence of small lakes, resulting from water level changes in the main basin, is documented in bottom sediments, and can be dated by radiocarbon and pollen analyses. The new stratigraphical findings were correlated with the earlier established morphological shorelines, and thus the Late Wisconsinan and Holocene history of lake levels was worked out.High post-Main Algonquin glacial lakes formed the highest shorelines along the east shore from Sault Ste. Marie up to Alona Bay between approximately 11 000 and over 10 100 B.P. Contemporaneously a series of Post-Duluth glacial lakes occupied the western Superior basin, subsequent to Glacial Lake Duluth. As the ice retreated to the north shore at 9500 B.P., Lake Minong came into existence. Its level was apparently controlled by a threshold higher than the present at Sault Ste. Marie. The water level of Lake Superior fell to the low water Houghton stage by 8000 B.P. The transgression which resulted in the Nipissing Great Lakes reached the Superior basin about 7000 B.P. and culminated 5500 B.P. Land uplift on the east shore of Lake Superior was very rapid immediately after the deglaciation, followed by decreasing rates up to the present, and there are all indications that the process has been continuous.

Key concepts: Shore, Geology, Shelf ice, Glacial lake, Structural basin, Radiocarbon dating, Deglaciation, Glacial period

Related papers

Back to paper searchBrowse research topicsOriginal source
Stratigraphical Studies on the Shoreline Displacement of Lake Superior — Research Paper | ScholarLens