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The geography and progression of blowouts in the coastal dunes along the eastern shore of Lake Michigan since 1938

Bibliographic Data

ID24088288
AuthorsKevin McKeehan (0000-0002-7242-6954, United States Geological Survey, corresponding author), Alan F Arbogast (0000-0001-6289-1732, Michigan State University)
Year2023
Volume115
Pages25-45
Publication date2023-09-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueQuaternary Research (JOURNAL)
Journal identifiersISSN: 0033-5894 • E-ISSN: 1096-0287
PublisherCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/qua.2023.10
OpenAlexW4365148287
LanguageEN
References cited158

Coastal dunes along Lake Michigan's eastern shoreline are a unique system comprising perhaps the largest complex of freshwater coastal dunes in the world. Here, we examine the blowouts in this region and determine how they have evolved since the 1930s. We conducted a spatiotemporal analysis of 435 blowouts by comparing repeat aerial images of the coast beginning in 1938. Using an unsupervised machine learning classification known as iso-clustering, we mapped blowout morphologies at three timestamps: 1938, 1986–1988, and 2018. We then compared the blowout geographies through a technique known as a spatial-temporal analysis of moving polygons (STAMP) model, which allowed us to analyze how each blowout changed in time and space. Results show blowouts have contracted ~37% in size since 1938, mostly at the expense of vegetation, with many fragmenting. These findings comport with other regional and global studies detailing a trend in coastal dune stabilization from vegetation and suggest that an increase in precipitation or other environment drivers could be responsible. Moreover, we detected no new blowouts since 1938 along the ~500 km shoreline or on any of the Lake Michigan islands. This suggests blowouts here are artifacts of premodern conditions, perhaps the result of prior stormier or drier eras.

Aerial photos · Coastal geography · Geography · Geomorphology · Physical geography · Remote sensing · Sand dune stabilization · Shore · Vegetation (pathology) · Aeolian processes and effects · Coastal and Marine Dynamics · Coastal wetland ecosystem dynamics · Geology · Oceanography

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