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DOI10.1016/j.quascirev.2019.03.033
Coupled ocean and atmospheric changes during Greenland stadial 1 in southwestern Europe
Naughton, F.1,2; Costas, S.3; Comes, S. D.1,4; Desprat, S.5,6; Rodrigues, T.1,2; Goni, M. F. Sanchez5,6; Renssen, H.7; Trigo, R.8; Bronk-Ramsey, C.9; Oliveira, D.1,2; Salgueiro, E.1,2; Voelker, A. H. L.1,2; Abrantes, F.1,2
发表日期2019
ISSN0277-3791
卷号212页码:108-120
英文摘要

Paleoclimate reconstructions suggest that the complex variability within the Greenland stadial 1 (GS-1) over western Europe was governed by coupled ocean and atmospheric changes. However, few works from the North Atlantic mid-latitudes document both the GS-1 onset and its termination, which are often considered as single abrupt transition events. Here, we present a direct comparison between marine (alkenone-based sea surface temperatures) and terrestrial (pollen) data, at very high resolution (28 years mean), from the southwestern Iberian shelf record D13882. Our results reveal a rather complex climatic period with internally changing conditions. The GS-1 onset (GS-1a: 12890-12720 yr BP) is marked by a progressive cooling and drying; GS-1b (12720-12390 yr BP) is the coldest and driest phase; GS-1c (12390-12030 yr BP) is marked by a progressive warming and increase in moisture conditions; GS-1 termination (GS-1d: 12030-11770 yr BP) is marked by rapid switches between cool wet, cold dry and cool wet conditions. Although hydroclimate response was very unsteady throughout the GS-1 and in particular during its termination phase, the persistence of an open temperate and Mediterranean forest in southwestern Iberia during the entire episode suggests that at least some moisture was delivered via the Westerlies. We propose coupled ocean and atmospheric mechanisms to reproduce these scenario. Changes in the strength of the Atlantic Meridional Overturning Circulation (AMOC) as well as variations in the North Atlantic sea-ice growth have favoured the displacement of the polar jet stream's latitudinal position and contributed to a complex spatial pattern and strength of the Westerlies across western Europe. (C) 2019 Elsevier Ltd. All rights reserved.


WOS研究方向Physical Geography ; Geology
来源期刊QUATERNARY SCIENCE REVIEWS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/97755
作者单位1.Portuguese Inst Sea & Atmosphere IPMA, Rua Alfredo Magalhaes Ramalho 6, P-1495006 Lisbon, Portugal;
2.Algarve Univ, Ctr Marine Sci CCMAR, Campus Gambelas, P-8005139 Faro, Portugal;
3.Algarve Univ, Ctr Marine & Environm Res CIMA, Campus Gambelas, P-8005139 Faro, Portugal;
4.Univ Manchester, Sch Environm Educ & Dev, Dept Geog, QEG, Oxford Rd, Manchester M13 9PL, Lancs, England;
5.EPHE, PSL, F-75014 Paris, France;
6.Univ Bordeaux, UMR CNRS 5805, EPOC, Allee Geoffroy St Hilaire, F-33615 Pessac, France;
7.Univ South Eastern Norway, Bo, Norway;
8.Lisbon Univ, Inst Dom Luiz, P-1749016 Lisbon, Portugal;
9.Univ Oxford, Res Lab Archaeol & Hist Art, Dyson Perrins Bldg,South Parks Rd, Oxford OX1 3QY, England
推荐引用方式
GB/T 7714
Naughton, F.,Costas, S.,Comes, S. D.,et al. Coupled ocean and atmospheric changes during Greenland stadial 1 in southwestern Europe[J],2019,212:108-120.
APA Naughton, F..,Costas, S..,Comes, S. D..,Desprat, S..,Rodrigues, T..,...&Abrantes, F..(2019).Coupled ocean and atmospheric changes during Greenland stadial 1 in southwestern Europe.QUATERNARY SCIENCE REVIEWS,212,108-120.
MLA Naughton, F.,et al."Coupled ocean and atmospheric changes during Greenland stadial 1 in southwestern Europe".QUATERNARY SCIENCE REVIEWS 212(2019):108-120.
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