Tropical Pacific forcing of Late-Holocene hydrologic variability in the coastal southwest United States

Tropical Pacific forcing of Late-Holocene hydrologic variability in the coastal southwest United States
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DOI:
10.1016/j.quascirev.2014.08.005
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发表时间:
2014-10-15
影响因子:
4
通讯作者:
Mensing, Scott A.
Mensing, Scott A.
中科院分区:
地球科学1区
文献类型:
--
作者:
Kirby, Matthew E.;Feakins, Sarah J.;Mensing, Scott A.

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Change in water availability is of great concern in the coastal southwest United States (CSWUS). Reconstructing the history of water pre-1800 AD requires the use of proxy data. Lakes provide long-lived, high-resolution terrestrial archives of past hydrologic change, and their sediments contain a variety of proxies. This study presents geochemical and sedimentological data from Zaca Lake, CA (Santa Barbara County) used to reconstruct a 3000 year history of winter season moisture source (delta D-wax) and catchment run-off (125-2000 mu m sand) at decadal resolution. Here we show that winter season moisture source and run-off are highly variable over the past 3000 years; superimposed are regime shifts between wetter or drier conditions that persist on average over multiple centuries. Moisture source and run-off do not consistently covary indicating multiple atmospheric circulation modes where wetter/drier conditions prevail. Grain-size analysis reveals two intervals of multi-century drought with less run-off that pre-date the "epic droughts" as identified by Cook et al. (2004). A well-defined wet period with more run-off is identified during the Little Ice Age. Notably, the grain size data show strong coherence with western North American percent drought area indices for the past 1000 years. As a result, our data extend the history of drought and pluvials back to 3000 calendar years BP in the CSWUS. Comparison to tropical Pacific proxies confirms the long-term relationship between El Nino and enhanced run-off in the CSWUS. Our results demonstrate the long-term importance of the tropical Pacific to the CSWUS winter season hydroclimate. (C) 2014 Elsevier Ltd. All rights reserved.