Morphology and Sediment Dynamics of Blossom Shoals at Icy Cape, Alaska

Author:

Eidam E. F.12ORCID,Thomson J.3ORCID,Malito J. G.24ORCID,Hošeková L.35

Affiliation:

1. College of Earth, Ocean, and Atmospheric Sciences Oregon State University Corvallis OR USA

2. Department of Earth, Marine, and Environmental Sciences University of North Carolina at Chapel Hill Chapel Hill NC USA

3. Applied Physics Laboratory University of Washington Seattle WA USA

4. University of Texas Bureau of Economic Geology Austin TX USA

5. University of Hawai'i at Mānoa Honolulu HI USA

Abstract

AbstractCapes and cape‐associated shoals represent sites of convergent sediment transport, and can provide points of relative coastal stability, navigation hazards, and offshore sand resources. Shoal evolution is commonly impacted by the regional wave climate. In the Arctic, changing sea‐ice conditions are leading to (a) longer open‐water seasons when waves can contribute to sediment transport, and (b) an intensified wave climate (related to duration of open water and expanding fetch). At Blossom Shoals offshore of Icy Cape in the Chukchi Sea, these changes have led to a five‐fold increase in the amount of time that sand is mobile at a 31‐m water depth site between the period 1953–1989 and the period 1990–2022. Wave conditions conducive to sand transport are still limited to less than 2% of the year, however—and thus it is not surprising that the overall morphology of the shoals has changed little in 70 years, despite evidence of active sand transport in the form of 1‐m‐scale sand waves on the flanks of the shoals which heal ice keel scours formed during the winter. Suspended‐sediment transport is relatively weak due to limited sources of mud nearby, but can be observed in a net northeastward direction during the winter (driven by the Alaska Coastal Current under the ice) and in a southwestward direction during open‐water wind events. Longer open‐water seasons mean that annual net northeastward transport of fine sediment may weaken, with implications for the residence time of fine‐grained sediments and particle‐associated nutrients in the Chukchi Sea.

Publisher

American Geophysical Union (AGU)

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