Upper ocean climate of the Eastern Mediterranean Sea during the Holocene Insolation Maximum - a model study

被引:20
作者
Adloff, F. [1 ,2 ]
Mikolajewicz, U. [1 ]
Kucera, M. [3 ]
Grimm, R. [1 ,2 ]
Maier-Reimer, E. [1 ]
Schmiedl, G. [4 ]
Emeis, K-C [5 ]
机构
[1] Max Planck Inst Meteorol, Hamburg, Germany
[2] Int Max Planck Res Sch Earth Syst Modelling, Hamburg, Germany
[3] Univ Tubingen, Dept Geosci, Tubingen, Germany
[4] Univ Hamburg, Dept Geosci, Hamburg, Germany
[5] Univ Hamburg, Inst Biogeochem & Marine Chem, Hamburg, Germany
关键词
LAST GLACIAL MAXIMUM; BLACK-SEA; GENERAL-CIRCULATION; SAPROPEL; STRAIT; SURFACE; WATER; TEMPERATURE; EXCHANGE; RECORDS;
D O I
10.5194/cp-7-1103-2011
中图分类号
P [天文学、地球科学];
学科分类号
070403 [天体物理学];
摘要
Nine thousand years ago (9 ka BP), the Northern Hemisphere experienced enhanced seasonality caused by an orbital configuration close to the minimum of the precession index. To assess the impact of this "Holocene Insolation Maximum" (HIM) on the Mediterranean Sea, we use a regional ocean general circulation model forced by atmospheric input derived from global simulations. A stronger seasonal cycle is simulated by the model, which shows a relatively homogeneous winter cooling and a summer warming with well-defined spatial patterns, in particular, a subsurface warming in the Cretan and western Levantine areas. The comparison between the SST simulated for the HIM and a reconstruction from planktonic foraminifera transfer functions shows a poor agreement, especially for summer, when the vertical temperature gradient is strong. As a novel approach, we propose a reinterpretation of the reconstruction, to consider the conditions throughout the upper water column rather than at a single depth. We claim that such a depth-integrated approach is more adequate for surface temperature comparison purposes in a situation where the upper ocean structure in the past was different from the present-day. In this case, the depth-integrated interpretation of the proxy data strongly improves the agreement between modelled and reconstructed temperature signal with the subsurface summer warming being recorded by both model and proxies, with a small shift to the south in the model results. The mechanisms responsible for the peculiar subsurface pattern are found to be a combination of enhanced down-welling and wind mixing due to strengthened Etesian winds, and enhanced thermal forcing due to the stronger summer insolation in the Northern Hemisphere. Together, these processes induce a stronger heat transfer from the surface to the subsurface during late summer in the western Levantine; this leads to an enhanced heat piracy in this region, a process never identified before, but potentially characteristic of time slices with enhanced insolation.
引用
收藏
页码:1103 / 1122
页数:20
相关论文
共 59 条
[1]
Seismic stratigraphy of Late Quaternary deposits from the southwestern Black Sea shelf:: evidence for non-catastrophic variations in sea-level during the last ∼10,000 yr [J].
Aksu, AE ;
Hiscott, RN ;
Yasar, D ;
Isler, FI ;
Marsh, S .
MARINE GEOLOGY, 2002, 190 (1-2) :61-94
[2]
ANDERSSON A, 2007, HAMBURG OCEAN ATMOSP, DOI DOI 10.1594/WDCC/H0APS3_MONTHLY
[3]
[Anonymous], 2005, THESIS U TOULOUSE 3
[4]
[Anonymous], 349 MAX PLANCK I MET
[5]
[Anonymous], 2009, ERA REPORT SERIES
[6]
Arakawa A., 1977, Methods in Computational Physics: Advances in Research and Applications, P173, DOI [10.1016/B978-0-12-460817-7.50009-4, DOI 10.1016/B978-0-12-460817-7.50009-4]
[7]
Astraldi M., 1996, Dynamics of Straits and Channels, V2, P95
[8]
Transport estimates in the Strait of Gibraltar with a tidal inverse model [J].
Baschek, B ;
Send, U ;
Lafuente, JG ;
Candela, J .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2001, 106 (C12) :31033-31044
[9]
BE AWH, 1977, J PALCONT, V43, P1384
[10]
BETHOUX JP, 1979, OCEANOL ACTA, V2, P157