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早更新世高纬度地区对赤道东太平洋气候的影响。

High-latitude influence on the eastern equatorial Pacific climate in the early Pleistocene epoch.

作者信息

Liu Zhonghui, Herbert Timothy D

机构信息

Department of Geological Sciences, Brown University, Providence, Rhode Island 02912, USA.

出版信息

Nature. 2004 Feb 19;427(6976):720-3. doi: 10.1038/nature02338.

Abstract

Many records of tropical sea surface temperature and marine productivity exhibit cycles of 23 kyr (orbital precession) and 100 kyr during the past 0.5 Myr (refs 1-5), whereas high-latitude sea surface temperature records display much more pronounced obliquity cycles at a period of about 41 kyr (ref. 6). Little is known, however, about tropical climate variability before the mid-Pleistocene transition about 900 kyr ago, which marks the change from a climate dominated by 41-kyr cycles (when ice-age cycles and high-latitude sea surface temperature variations were dictated by changes in the Earth's obliquity) to the more recent 100-kyr cycles of ice ages. Here we analyse alkenones from marine sediments in the eastern equatorial Pacific Ocean to reconstruct sea surface temperatures and marine productivity over the past 1.8 Myr. We find that both records are dominated by the 41-kyr obliquity cycles between 1.8 and 1.2 Myr ago, with a relatively small contribution from orbital precession, and that early Pleistocene sea surface temperatures varied in the opposite sense to local annual insolation in the eastern equatorial Pacific Ocean. We conclude that during the early Pleistocene epoch, climate variability at our study site must have been determined by high-latitude processes that were driven by orbital obliquity forcing.

摘要

在过去的50万年里,许多热带海表温度和海洋生产力记录呈现出23 kyr(轨道岁差)和100 kyr的周期(参考文献1 - 5),而高纬度海表温度记录则显示出在约41 kyr周期更为明显的倾角周期(参考文献6)。然而,对于大约90万年前中更新世过渡之前的热带气候变化知之甚少,中更新世过渡标志着从以41 kyr周期为主导的气候(此时冰期周期和高纬度海表温度变化由地球倾角变化决定)向更近的100 kyr冰期周期的转变。在这里,我们分析了赤道东太平洋海洋沉积物中的烯酮,以重建过去180万年的海表温度和海洋生产力。我们发现,在180万年至120万年前,这两个记录都以41 kyr的倾角周期为主导,轨道岁差的贡献相对较小,并且早更新世海表温度的变化与赤道东太平洋当地的年日照相反。我们得出结论,在早更新世时期,我们研究地点的气候变化一定是由轨道倾角强迫驱动的高纬度过程所决定的。

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