Water vapour source impacts on oxygen isotope variability in tropical precipitation during Heinrich events

被引:94
作者
Lewis, S. C. [1 ]
LeGrande, A. N. [2 ,3 ]
Kelley, M. [2 ,3 ]
Schmidt, G. A. [2 ,3 ]
机构
[1] Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT 0200, Australia
[2] Columbia Univ, NASA, Goddard Inst Space Studies, New York, NY 10025 USA
[3] Columbia Univ, Ctr Climate Syst Res, New York, NY 10025 USA
关键词
LAST GLACIAL PERIOD; ORBITAL-SCALE CHANGES; ABRUPT CLIMATE-CHANGE; EAST-ASIAN MONSOON; THERMOHALINE CIRCULATION; ATMOSPHERIC CIRCULATION; LATE PLEISTOCENE; HIGH-RESOLUTION; SUBTROPICAL BRAZIL; MILLENNIAL-SCALE;
D O I
10.5194/cp-6-325-2010
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Water isotope records such as speleothems provide extensive evidence of past tropical hydrological changes. During Heinrich events, isotopic changes in monsoon regions have been interpreted as implying a widespread drying through the Northern Hemisphere tropics and an anti-phased precipitation response in the south. Here, we examine the sources of this variability using a water isotope-enabled general circulation model, Goddard Institute for Space Studies ModelE. We incorporate a new suite of vapour source distribution tracers to help constrain the impact of precipitation source region changes on the isotopic composition of precipitation and to identify nonlocal amount effects. We simulate a collapse of the North Atlantic meridional overturning circulation with a large freshwater input to the region as an idealised analogue to iceberg discharge during Heinrich events. An increase in monsoon intensity, defined by vertical wind shear, is modelled over the South American domain, with small decreases simulated over Asia. Simulated isotopic anomalies agree well with proxy climate records, with lighter isotopic values simulated over South America and enriched values across East Asia. For this particular abrupt climate event, we identify which climatic change is most likely linked to water isotope change - changes in local precipitation amount, monsoon intensity, water vapour source distributions or precipitation seasonality. We categorise individual sites according to the climate variability that water isotope changes are most closely associated with, and find that the dominant isotopic controls are not consistent across the tropics - simple local explanations, in particular, fall short of explaining water isotope variability at all sites. Instead, the best interpretations appear to be site specific and often regional in scale.
引用
收藏
页码:325 / 343
页数:19
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