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Astronomical forcing in Late Eocene marine sediments

机译:晚始新世海相沉积物的天文学强迫

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摘要

We use an X-ray fluorescence (XRF) Core Scanner to obtain records of elemental concentrations is sediment cores from Ocean Drilling Program (ODP) Leg 171B, Site 1052 (Blake Nose, Atlantic margin of northern Florida). This records spans the Middle to Late Eocene, as indicated by bio- and magnetostratigraphy, and displays cyclicity that can be attributed to the orbital forcing of a combination of climate, ocean circulation, or productivity. We use the XRF counts of iron and calcium as a proxy of the relative contribution from calcium carbonate and terrestrial material to construct a new composite depth record. This new composite depth record provides the basis to extend the astronomically calibrated geological time scale into the Middle Eocene and results in revised estimates for the age and duration of magnetochrons C16 through C18. In addition, we find an apparent change in the dominance of orbitally driven changes in obliquity and climatic precession at around 36.7 Ma on our new time scale. Long term amplitude modulation patterns of eccentricity and obliquity in the data do not seem to match the current astronomical model any more, suggesting the possibility of new constraints on astronomical calculations.
机译:我们使用X射线荧光(XRF)核心扫描仪来获取元素浓度的记录,这些元素是海洋钻探计划(ODP)腿171B,站点1052(北佛罗里达大西洋边缘的布莱克·诺斯)的沉积物核心。如生物地层学和磁地层学所表明的那样,该记录跨越中新世至晚新世,并显示出可归因于气候,海洋环流或生产力组合的轨道强迫的周期性。我们使用铁和钙的XRF计数作为碳酸钙和陆地物质相对贡献的代表,以构建新的复合深度记录。这项新的复合深度记录为将经天文学校正的地质时间尺度扩展到中始新世提供了基础,并导致了对C16至C18磁计时的年龄和持续时间的修订估算。此外,在我们的新时间尺度上,我们发现了轨道驱动的倾角和气候进动变化的优势发生了明显变化,约为36.7 Ma。数据中偏心和倾斜的长期幅度调制模式似乎不再与当前的天文模型匹配,这暗示了对天文计算施加新约束的可能性。

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