globalchange  > 气候变化与战略
DOI: 10.5194/cp-9-353-2013
Scopus记录号: 2-s2.0-84873901185
论文题名:
Greenland ice sheet contribution to sea level rise during the last interglacial period: A modelling study driven and constrained by ice core data
作者: Quiquet A.; Ritz C.; Punge H.J.; Salas Y Mélia D.
刊名: Climate of the Past
ISSN: 18149324
出版年: 2013
卷: 9, 期:1
起始页码: 353
结束页码: 366
语种: 英语
Scopus关键词: anthropogenic effect ; data set ; GIS ; ice core ; Intergovernmental Panel on Climate Change ; Last Interglacial ; numerical model ; paleoclimate ; proxy climate record ; reconstruction ; sea level change ; Arctic ; Greenland ; Greenland Ice Sheet
英文摘要: As pointed out by the forth assessment report of the Intergovernmental Panel on Climate Change, IPCC-AR4 (Meehl et al., 2007), the contribution of the two major ice sheets, Antarctica and Greenland, to global sea level rise, is a subject of key importance for the scientific community. By the end of the next century, a 3-5 C warming is expected in Greenland. Similar temperatures in this region were reached during the last interglacial (LIG) period, 130-115 ka BP, due to a change in orbital configuration rather than to an anthropogenic forcing. Ice core evidence suggests that the Greenland ice sheet (GIS) survived this warm period, but great uncertainties remain about the total Greenland ice reduction during the LIG. Here we perform long-term simulations of the GIS using an improved ice sheet model. Both the methodologies chosen to reconstruct palaeoclimate and to calibrate the model are strongly based on proxy data. We suggest a relatively low contribution to LIG sea level rise from Greenland melting, ranging from 0.7 to 1.5 m of sea level equivalent, contrasting with previous studies. Our results suggest an important contribution of the Antarctic ice sheet to the LIG highstand.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/49479
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Quiquet A.,Ritz C.,Punge H.J.,et al. Greenland ice sheet contribution to sea level rise during the last interglacial period: A modelling study driven and constrained by ice core data[J]. Climate of the Past,2013-01-01,9(1)
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