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首页> 外文期刊>American Journal of Science >REEVALUATING THE AGE OF THE WALDEN CREEK GROUP AND THE KINEMATIC EVOLUTION OF THE WESTERN BLUE RIDGE, SOUTHERN APPALACHIANS
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REEVALUATING THE AGE OF THE WALDEN CREEK GROUP AND THE KINEMATIC EVOLUTION OF THE WESTERN BLUE RIDGE, SOUTHERN APPALACHIANS

机译:重新评估沃尔登·克里克族的年龄和南阿巴拉契亚山脉西蓝脊的运动演化

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An integrated synthesis of existing datasets (detailed geologic mapping, geochronologic, paleontologic, geophysical) with new paleontologic and geochemical investigations of rocks previously interpreted as part of the Neoproterozoic Walden Creek Group in southeastern Tennessee suggest a necessary reevaluation of the kinematics and structural architecture of the Blue Ridge Foothills. The western Blue Ridge of Tennessee, North Carolina, and Georgia is composed of numerous northwest-directed early and late Paleozoic thrust sheets, which record pronounced variation in stratigraphic/structural architecture and timing of metamorphism. The detailed spatial, temporal, and kinematic relationships of these rocks have remained controversial. Two fault blocks that are structurally isolated between the Great Smoky and Miller Cove-Greenbrier thrust sheets, here designated the Maggies Mill and Citico thrust sheets, contain Late Ordovician-Devonian conodonts and stable isotope chemostratigraphic signatures consistent with a mid-Paleozoic age. Geochemical and paleontological analyses of Walden Creek Group rocks northwest and southeast of these two thrust sheets, however, are more consistent with a Late Neoproterozoic (550-545 Ma) depositional age. Consequently, the structural juxtaposition of mid-Paleozoic rocks within a demonstrably Neoproterozoic-Cambrian succession between the Great Smoky and Miller Cove-Greenbrier thrust sheets suggests that a simple foreland-propagating thrust sequence model is not applicable in the Blue Ridge Foothills. We propose that these younger rocks were deposited landward of the Ocoee Supergroup, and were subsequently plucked from the Great Smoky fault footwall as a horse, and breached through the Great Smoky thrust sheet during Alleghanian emplacement of that structure.
机译:现有数据集的详细信息(详细的地质图,地质年代学,古生物学,地球物理)与先前被解释为田纳西州东南部新元古代沃尔登克里克群的一部分的岩石的新古生物学和地球化学研究的综合表明,需要对岩体的运动学和结构结构进行必要的重新评估蓝岭山麓。田纳西州,北卡罗来纳州和佐治亚州的蓝脊西部由许多西北向的早,晚古生代逆冲片层组成,记录了地层/构造构造和变质时间的明显变化。这些岩石的详细的空间,时间和运动学关系仍存在争议。在大烟和米勒科夫-格林布里尔逆冲板之间结构上隔离的两个断层块,这里称为玛吉斯米尔和西铁科逆冲板,包含晚奥陶纪-德文统牙形石和稳定的同位素化学地层学特征,与古生代中期一致。但是,这两个逆冲片的西北和东南部的Walden Creek群岩石的地球化学和古生物学分析与新元古代晚期(550-545 Ma)的沉积年龄更加一致。因此,在大烟山和米勒湾-格林布里尔推力板之间的明显的新元古代-寒武纪演替中,中古生界岩石的结构并置表明,简单的前陆传播推力序列模型不适用于蓝岭山麓丘陵地带。我们建议这些较年轻的岩石沉积在Ocoee超级群的陆地上,然后像一匹马一样从大烟断层下盘中拔出,并在该结构的阿勒格尼安时期被大烟冲断层冲破。

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