在过去的80万年中,轨道和千年南极气候变化
J Jouzel1, V Masson-Delmotte, O Cattani
1Laboratoire des Sciences du Climat et l'Environnement, Institut Pierre Simon Laplace, CEA-CNRS-Université de Versailles Saint-Quentin en Yvelines, CE Saclay, Gif-sur-Yvette, France. jean.jouzel@lsce.ipsl.fr
概括
来自南极冰的新型高分辨率形状扩展了气候记录,可以追溯到80万年前. 这些数据揭示了过去的气候事件,并表明轨道周期会影响冰河间时期的强度.
科学领域:
- 古气候学 古气候学
- 冰川学的冰川学
- 气候建模气候模型
背景情况:
- 冰芯提供了宝贵的古气候档案.
- 南极冰芯提供了长期的气候重建.
- 冰中的是过去温度的代理.
研究的目的:
- 来自整个欧洲项目南极洲冰的高分辨率档案呈现.
- 为了将南极气候记录扩展到海洋同位素阶段20.2 (约. 在80万年前).
- 为了研究丹斯加尔德-奥什格尔事件和南极气候变化之间的关系.
主要方法:
- 圆顶C冰芯的高分辨率分析.
- 大气一般循环模型实验包括水同位素.
- 格陵兰和南极记录之间的气候事件对应的分析.
主要成果:
- 现在可以获得一个连续的,高分辨率的形状,覆盖了80万年.
- 模型实验支持解释记录作为温度代理.
- 丹斯加尔德-奥什格尔类事件及其南极对应事件在以前的冰川时期被确定具有类似的幅度.
结论:
- 南极圆顶C记录提供了关于过去气候变化的详细视图.
- 轨道强迫 (斜率和前行) 可能会调节冰河间时期的强度.
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