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Orbitally tuned timescale and astronomical forcing in the middle Eocene to early Oligocene

机译:中始新世至渐新世的轨道调谐时标和天文强迫

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摘要

Deciphering the driving mechanisms of Earth system processes, including the climate dynamics expressed as paleoceanographic events, requires a complete, continuous, and high-resolution stratigraphy that is very accurately dated. In this study, a robust astronomically calibrated age model was constructed for the middle Eocene to early Oligocene interval (31-43 Ma) in order to permit more detailed study of the exceptional climatic events that occurred during this time, including the middle Eocene climate optimum and the Eocene-Oligocene transition. A goal of this effort is to accurately date the middle Eocene to early Oligocene composite section cored during the Pacific Equatorial Age Transect (PEAT, IODP Exp. 320/321). The stratigraphic framework for the new timescale is based on the identification of the stable long eccentricity cycle in published and new high-resolution records encompassing bulk and benthic stable isotope, calibrated XRF core scanning, and magnetostrati-graphic data from ODP Sites 171B-1052, 189-1172, 199-1218, and 207-1260 as well as IODP Sites 320-U1333, and 320-U1334 spanning magnetic polarity Chrons C12n to C20n. Subsequently orbital tuning of the records to the La2011 orbital solution was conducted. The resulting new timescale revises and refines the existing orbitally tuned age model and the geomagnetic polarity timescale from 31 to 43 Ma. The newly defined absolute age for the Eocene-Oligocene boundary validates the astronomical tuned age of 33.89 Ma identified at the Massignano, Italy, global stra-totype section and point. The compilation of geochemi-cal records of climate-controlled variability in sedimenta- tion through the middle-to-late Eocene and early Oligocene demonstrates strong power in the eccentricity band that is readily tuned to the latest astronomical solution. Obliquity driven cyclicity is only apparent during 2.4 myr eccentricity cycle minima around 35.5, 38.3, and 40.1 Ma.
机译:破译地球系统过程的驱动机制,包括以古海洋学事件表示的气候动力学,需要完整,连续且高分辨率的地层,并且要非常准确地确定日期。在这项研究中,建立了一个健壮的天文校准年龄模型,用于中始新世至渐新世早期(31-43 Ma),以便可以更详细地研究这段时间内发生的异常气候事件,包括中始新世气候最佳和始新世-渐新世过渡。这项工作的目标是准确地确定中太平洋始新世至太平洋赤道时代断面(PEAT,IODP Exp。320/321)核心的渐新世早期复合剖面的年代。新时标的地层学框架是基于已发布的和新的高分辨率记录中稳定长偏心周期的确定,这些高分辨率记录包括大块和底栖稳定同位素,校准的XRF岩心扫描以及来自ODP站点171B-1052的地磁地层数据, 189-1172、199-1218和207-1260以及IODP站点320-U1333和320-U1334,它们的磁极时序C12n至C20n。随后,将记录进行轨道调整到La2011轨道解决方案。由此产生的新时标修改并完善了现有的轨道调谐年龄模型和地磁极性时标,范围从31 Ma到43 Ma。新定义的始新世-渐新世边界绝对年龄验证了意大利马西尼亚诺,全球层位剖面和点确定的33.89 Ma天文调谐年龄。中晚始新世和渐新世早期沉积的气候控制变化的地球化学记录的汇编显示出在偏心带中的强大力量,可以很容易地将其调整为最新的天文解。倾斜驱动的周期性仅在2.4 myr偏心周期最小值35.5、38.3和40.1 Ma左右时才明显。

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  • 来源
    《Climate of the past》 |2014年第3期|955-973|共19页
  • 作者单位

    MARUM - Center for Marine Environmental Sciences, University of Bremen, Leobener Strasse, 28359 Bremen, Germany;

    MARUM - Center for Marine Environmental Sciences, University of Bremen, Leobener Strasse, 28359 Bremen, Germany;

    MARUM - Center for Marine Environmental Sciences, University of Bremen, Leobener Strasse, 28359 Bremen, Germany;

    Institute of Geophysics and Planetology, University of Hawaii, Honolulu, HI 96822, USA;

    National Oceanography Centre Southampton, University of Southampton, Waterfront Campus, European Way, Southampton, SO14 3ZH, UK;

    Department of Geography and Geology, Sam Houston State University, Huntsville, TX 77431, USA;

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