Comparison of the last interglacial climate simulated by a coupled global model of intermediate complexity and an AOGCM

被引:53
|
作者
Kubatzki, C
Montoya, M
Rahmstorf, S
Ganopolski, A
Claussen, H
机构
[1] Potsdam Inst Climate Impact Res, D-14412 Potsdam, Germany
[2] Univ Hamburg, Inst Meteorol, D-20146 Hamburg, Germany
关键词
D O I
10.1007/s003820000078
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The climate at the Last Interglacial Maximum (125 000 years before present) is investigated with the atmosphere-ocean general circulation model ECHAM-1/LSG and with the climate system model of intermediate complexity CLIMBER-2. Comparison of the results of the two models reveals broad agreement in most large-scale features, but also some discrepancies. The fast turnaround time of CLIMBER-2 permits one to perform a number of sensitivity experiments to (1) investigate the possible reasons for those differences, in particular the impact of different freshwater fluxes to the ocean, (2) analyze the sensitivity of the results to changes in the definition of the modern reference run concerning CO2 levels (preindustrial versus "present"), and (3) estimate the role of vegetation in the changed climate. Interactive vegetation turns out to be capable of modifying the initial climate signals significantly, leading especially to warmer winters in large parts of the Northern Hemisphere, as indicated by various paleodata. Differences due to changes in the atmospheric CO2 content and due to interactive vegetation are shown to be at least of the same order of magnitude as differences between the two completely different models, demonstrating the importance of careful experimental design.
引用
收藏
页码:799 / 814
页数:16
相关论文
共 50 条
  • [1] Comparison of the last interglacial climate simulated by a coupled global model of intermediate complexity and an AOGCM
    C. Kubatzki
    M. Montoya
    S. Rahmstorf
    A. Ganopolski
    M. Claussen
    Climate Dynamics, 2000, 16 : 799 - 814
  • [2] Temperatures at the last interglacial simulated by a coupled ocean-atmosphere climate model
    Montoya, M
    Crowley, TJ
    von Storch, H
    PALEOCEANOGRAPHY, 1998, 13 (02): : 170 - 177
  • [3] Simulation of the last glacial cycle with a coupled climate ice-sheet model of intermediate complexity
    Ganopolski, A.
    Calov, R.
    Claussen, M.
    CLIMATE OF THE PAST, 2010, 6 (02) : 229 - 244
  • [4] PHYSICAL INTERACTIONS WITHIN A COUPLED CLIMATE MODEL OVER THE LAST GLACIAL INTERGLACIAL CYCLE
    BERGER, A
    FICHEFET, T
    GALLEE, H
    MARSIAT, I
    TRICOT, C
    VANYPERSELE, JP
    TRANSACTIONS OF THE ROYAL SOCIETY OF EDINBURGH-EARTH SCIENCES, 1990, 81 : 357 - 369
  • [5] The last interglacial (Eemian) climate simulated by LOVECLIM and CCSM3
    Nikolova, I.
    Yin, Q.
    Berger, A.
    Singh, U. K.
    Karami, M. P.
    CLIMATE OF THE PAST, 2013, 9 (04) : 1789 - 1806
  • [6] Factors controlling the last interglacial climate as simulated by LOVECLIM1.3
    Loutre, M. F.
    Fichefet, T.
    Goosse, H.
    Huybrechts, P.
    Goelzer, H.
    Capron, E.
    CLIMATE OF THE PAST, 2014, 10 (04) : 1541 - 1565
  • [7] Synchronization phenomena observed in glacial-interglacial cycles simulated in an Earth system model of intermediate complexity
    Mitsui, Takahito
    Willeit, Matteo
    Boers, Niklas
    EARTH SYSTEM DYNAMICS, 2023, 14 (06) : 1277 - 1294
  • [8] Global River Discharge and Floods in the Warmer Climate of the Last Interglacial
    Scussolini, Paolo
    Eilander, Dirk
    Sutanudjaja, Edwin H.
    Ikeuchi, Hiroaki
    Hoch, Jannis M.
    Ward, Philip J.
    Bakker, Pepijn
    Otto-Bliesner, Bette L.
    Guo, Chuncheng
    Stepanek, Christian
    Zhang, Qiong
    Braconnot, Pascale
    Guarino, Maria-Vittoria
    Muis, Sanne
    Yamazaki, Dai
    Veldkamp, Ted I. E.
    Aerts, Jeroen C. J. H.
    GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (18)
  • [9] The impact of orbital forcing on the climate of an intermediate-complexity coupled model
    Weber, SL
    GLOBAL AND PLANETARY CHANGE, 2001, 30 (1-2) : 7 - 12
  • [10] Last Interglacial climate and sea-level evolution from a coupled ice sheet-climate model
    Goelzer, Heiko
    Huybrechts, Philippe
    Loutre, Marie-France
    Fichefet, Thierry
    CLIMATE OF THE PAST, 2016, 12 (12) : 2195 - 2213