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Linked sequence development and global climate change: The Upper Mississippian record in the Appalachian basin

机译:关联序列开发与全球气候变化:阿巴拉契亚盆地上密西西比河上的记录

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摘要

The character and relative stratigraphic position of paleoclimatic indicators within Upper Mississippian strata of southern West Virginia suggest a link between eustasy and patterns of continental- to global-scale atmospheric circulation. At the cyclothem scale, annual rhythms in marine facies, and paleovertisols and lacustrine carbonates in terrestrial units indicate that seasonal, semiarid climatic conditions prevailed during highstand progradation. In contrast, leached paleosols and coals that underlie sequence boundaries and occur within transgressive heterolithic facies are suggestive of humid climatic conditions during late highstand through early transgression. Milankovitch-band, glacial-interglacial cyclicity may explain both sequence development and the evidence for Late Mississippian climate fluctuations in the Appalachian basin. Shifts from seasonal to humid climatic conditions are attributed to systematic variation in monsoonal circulation, whereby seasonal moisture became restricted to the equatorial belt during the lowstands of each approximately 400 k.y. glacial-interglacial cycle.
机译:西维吉尼亚州南部上密西西比上地层内的古气候指示符的特征和相对地层位置表明,狂喜与大陆到全球尺度的大气环流之间存在联系。在回旋尺度上,海相的年度节律,以及陆地单位的古生物和碳酸盐湖相表明,在高分生长期间,季节性,半干旱气候条件普遍存在。相反,在层序界线之下并发生在海侵异质岩相中的浸出的古土壤和煤,暗示了高潮后期至早期海侵期间的潮湿气候条件。米兰科维奇带,冰川-冰川间的周期性可能解释了层序发育以及阿巴拉契亚盆地晚密西西比气候波动的证据。从季节性气候向潮湿气候的转变归因于季风环流的系统变化,从而在每个大约400 k.y的低潮期,季节性水分被限制在赤道带。冰川间期循环。

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