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Long‐term hydrologic connectivity on the Australian dryland margins: Evidence from the Willandra Lakes World Heritage Area over the last 60 ky

Kathryn E. Fitzsimmons; Markus L. Fischer; Tegan Smith; Tobias Lauer; Maike Nowatzki; Kanchan Mishra; Colin V. Murray‐Wallace
Journal of Quaternary Science · Vol. 40, Issue 5 · pp. 876-892 · 2025

Abstract

The semi‐arid Australian continental inland is increasingly subject to climatic extremes such as drought and flooding. Combined with the exceptionally low topographic relief characteristic of this region, hydroclimatic extremes can have an enormous impact on the land surface. Nevertheless our understanding of dryland hydrologic connectivity and earth‐surface response remains poorly understood and largely unquantified. Here we investigate the impact of past hydroclimate on the semi‐arid Willandra Lakes over the last 60 ky, integrating sediment‐based chronologies for filling and drying of multiple basins with water‐flux modelling and reconstruction of palaeoclimate parameters. We quantify the threshold inflow volume required to fill the lake system to 2 km 3 . We establish that prior to 25 ka, permanent lakes persisted for protracted periods of time in response to increased catchment precipitation, consistent with regional geomorphic indicators for wetter conditions. By contrast, the Last Glacial Maximum (LGM) oversaw rapid couplets of lake filling and drying despite lower precipitation, temperature, and increasing evaporation. We propose that seasonal snow melt from the highland headwaters during this cold phase, coupled with increased effective runoff due to reduced vegetation cover, was responsible for the large quantities of water entering the system at this time.

Bibliographic Information

JournalJournal of Quaternary Science
PublisherWiley
Publication Date2025-07-01
Publication Year2025
Volume40
Issue5
Pages876-892
Document TypeJournal Article
Print ISSN0267-8179
eISSN1099-1417
DOI10.1002/jqs.3717
SubjectEarth & Environmental Science

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NARA Access Coverage1996-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/10991417
Publisher PageOpen Publisher Page
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