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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >The drift history of Adria and Africa from 280Ma to Present, Jurassic true polar wander, and zonal climate control on Tethyan sedimentary facies
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The drift history of Adria and Africa from 280Ma to Present, Jurassic true polar wander, and zonal climate control on Tethyan sedimentary facies

机译:阿德里亚和非洲从280Ma到现在的漂移历史,侏罗纪真正的极地漂移以及特提斯沉积相的纬向气候控制

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The orogenic belts surrounding the undeformed Adriatic Sea represent the margins of an area known as Adria, the African promontory. We have undertaken a critical appraisal of paleomagnetic data from regions of Adria considered parautochthonous relative to Africa, obtained either from biostratigraphically dated sedimentary rocks, corrected for inclination shallowing, or from igneous rocks that are regarded as free from any inclination shallowing bias. Paleomagnetic directions were used to calculate paleomagnetic poles for comparison with coeval, and inclination flattening-free, paleomagnetic poles from stable Africa. Visual coherence of paleopoles for several time slices from the Early Permian to the Eocene supports the construction of a composite apparent polar wander path (APWP) valid for parautochthonous Adria and stable Africa. This composite APWP is compared to previous APWPs, finding good agreement with the global APWP of Kent and Irving (2010). Both APWPs show a remarkable and rapid polar shift of ~. 40° in the Jurassic that other APWPs tend to underestimate. We interpret this shift to represent a major episode of true polar wander (TPW), from ~. 183. Ma in the Early Jurassic to ~. 151. Ma in the Late Jurassic. Using a simple zonal climate model, the drift motion of Adria attached to Africa appears to be consistent with the distribution of Permian-Cretaceous sedimentary facies on Adria.
机译:未变形的亚得里亚海周围的造山带代表着非洲海角阿德里亚地区的边缘。我们对被认为是相对于非洲为准平行的阿德里亚地区的古地磁资料进行了严格的评估,这些地区是从生物地层学日期的沉积岩中校正了倾角浅度的结果,或者是从被认为没有任何倾角浅度偏差的火成岩中获得的。古磁方向用于计算古磁极,以与来自稳定非洲的同期,无倾角的古磁极进行比较。从早二叠世到始新世的几个时间片,古极的视觉连贯性支持构建适用于近地层亚德里亚和稳定非洲的复合视在极地漫游路径(APWP)。将该综合APWP与以前的APWP进行了比较,发现其与Kent and Irving(2010)的全球APWP很好地吻合。两个APWP均显示〜的显着且快速的极移。在侏罗纪,其他APWP往往会低估40°。我们将这种转变解释为代表〜的真实极地漂移(TPW)的主要事件。 183.马在侏罗纪至初。 151.侏罗纪晚期的马。使用简单的区域气候模型,附着在非洲的阿德里亚的漂移运动似乎与阿德里亚上的二叠纪-白垩纪沉积相的分布一致。

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