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Twentieth century extreme precipitation detected in a high-resolution, coastal lake-sediment record from California

Clarke A. Knight; David B. Wahl; Jason Addison; Mark Baskaran; R. Scott Anderson; Marie R. Champagne; Lysanna Anderson; Liubov Presnetsova; Beth Caissie; Scott Starratt
Journal of Paleolimnology · Vol. 73, Issue 1 · pp. 35-51 · 2025

Abstract

California faces increasing economic and societal risks from extreme precipitation and flooding associated with atmospheric rivers (ARs) under projected twenty-first century climate warming. Lake sediments can retain signals of past extreme precipitation events, allowing reconstructions beyond the period of instrumental records. Here, we calibrate AR-related extreme precipitation from the last century to proxy data from lake sediments collected in the latitudinal zone of the highest frequency landfall for modern ARs in California. Excursions in erosional proxy data (Ti/Al) are positively and significantly correlated (r median = 0.45, p median = 0.04) with modern records of integrated vapor transport (IVT, kg m −1 s −1 ), a key metric of AR intensity, using correlations that incorporate age-model uncertainty. Despite the land-use change near the study site, the data suggest intense and long-lasting AR storms are identifiable in this sedimentary record. These results allow conservative inferences concerning past extreme hydrology at this site.

Bibliographic Information

JournalJournal of Paleolimnology
PublisherSpringer
Publication Date2025-02-01
Publication Year2025
Volume73
Issue1
Pages35-51
Document TypeJournal Article
Print ISSN0921-2728
eISSN1573-0417
DOI10.1007/s10933-024-00345-9

Access Information

NARA Access Coverage1988-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10933
Publisher PageOpen Publisher Page
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