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Superposed fault systems of the southernmost Appalachian Talladega belt: Implications for paleozoic orogenesis in the southern Appalachians.

机译:最南端的阿巴拉契亚塔拉迪加带的叠加断层系统:对南部阿巴拉契亚古生代造山运动的影响。

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摘要

Two major thrust systems are located along the eastern Blue Ridge---western Blue Ridge boundary in the Alabama and Georgia Appalachians. The pre-metamorphic Hillabee thrust is near the trailing edge of the Talladega belt thrust sheet and is associated with emplacement of a backarc volcanic suite atop rocks of the Paleozoic Laurentian shelf. The post-metamorphic Hollins Line fault system emplaces metasedimentary rocks of the Neoproterozoic Laurentian rifted margin atop the Talladega belt amalgamated shelf-volcanic terrane. These three, fault bounded lithotectonic belts are important for unraveling the geologic history of this part of the Appalachian orogen and have widespread implications for the tectonic history of the southern Appalachians in general.;Following Neoproterozoic rifting of the Rodinian supercontinent and deposition of a thick metasedimentary package of rocks along an amagmatic rifted margin, now comprising the Ashland-Wedowee belt in the eastern Blue Ridge of Alabama and Georgia, shelf strata of the Kahatchee Mountain and Sylacauga Marble Groups (Talladega belt) indicate establishment of a passive margin along the Cambrian trailing edge of this portion of Laurentia. Intrusion of continental slope-rise deposits within the Ashland-Wedowee belt by latest Cambrian(?) to Middle Ordovician arc related plutons was immediately preceded by subduction initiation outboard of the trailing margin continental hinge zone as a result of passage of the Ouachita mid-ocean ridge along the southern margin of the Alabama promontory and foundering of Iapetan oceanic lithosphere in the weak transitional crust at the continent-ocean boundary. Rollback of the newly-formed, westward-dipping subduction zone resulted in extension within the overriding Laurentian plate and backarc spreading, leading to formation of the bimodal metavolcanic Hillabee Greenstone (Alabama-Georgia), Pumpkinvine Creek formation (Georgia), and other backarc affinity volcanic suites along structural strike of the Appalachians to the northeast. Continued westward subduction of Iapetan seafloor beneath the attenuated Laurentian margin resulted in extensive suprasubduction plutonism intruding the marginal rift basin and distal trailing margin sediments of the eastern Blue Ridge of Alabama and Georgia and farther to the northeast. Uplift of Cambrian and Ordovician shelf strata in the evolving backarc resulted in deposition of the southern Appalachian Blount-Taconic clastic wedge, which sourced intrabasinal uplifts along the westward facing (craton-facing) side of the Hillabee backarc, and perhaps localized thrust belts at the continental edge of the backarc associated with lithospheric compression during contractional phases of backarc evolution.;Following Ordovician accretionary orogenesis (Taconic orogeny) in Alabama, Georgia, and farther northeast, deposition of the Talladega Group in the Silurian(?) to earliest Mississippian(?) indicates stabilization of the most outboard portion of the Laurentian shelf margin. Latest Devonian-Mississippian collision along the Alabama promontory, however, resulted in emplacement of the Hillabee Greenstone terrane atop the adjacent Devonian-earliest Mississippian(?) shelf strata of the Talladega Group along a thin-skinned thrust fault, the Hillabee thrust, possibly as a result of collision between the Ouachita arc and the Laurentian margin. Following movement along the pre-metamorphic Hillabee thrust, progressive dynamothermal metamorphism affected both the amalgamated Talladega belt (Hillabee and Talladega-Sylacauga Marble-Kahatchee Mountain Groups) and Ashland-Wedowee belt.;Alleghanian terminal orogenesis (continental collision), culminating in the late Paleozoic Pangean supercontinent, resulted in telescoping of the Laurentian margin and emplacement of rifted margin metasediments and associated arc plutons atop the Talladega belt along the post-metamorphic Hollins Line footwall duplex thrust system.
机译:在阿拉巴马州和佐治亚州阿巴拉契亚山脉的蓝脊东部-蓝脊西部边界上有两个主要的逆冲系统。预变质的Hillabee逆冲作用靠近塔拉迪加带逆冲作用带的后缘,并且与古生代劳伦阶陆架上的后弧火山套件的位置有关。后变质的Hollins线断层系统将新元古代Laurentian裂谷的准沉积岩置于塔拉迪加带合并的陆架火山岩层之上。这三个断层带界的碎屑构造带对于揭示阿巴拉契亚造山带的这一部分的地质历史很重要,并且对整个南部阿巴拉契亚山脉的构造历史具有广泛的意义。;在罗迪尼超大陆的新元古代裂谷和厚沉积的沉积沉积之后沿岩石裂谷边缘的一叠岩石,现在包括阿拉巴马州东部蓝岭和佐治亚州的阿什兰-韦多威带,卡哈奇奇山的陆架地层和西拉考加大理石群(塔拉迪加带)表明沿寒武纪尾随带建立了被动边缘Laurentia这部分的边缘。 Ouachita中洋通过后,由最新的寒武纪(?)向奥陶纪中弧相关的侵入体侵入了阿什兰-韦多韦带内的大陆斜坡上升沉积物,之后立即在尾缘大陆铰链区外侧开始了俯冲作用。沿阿拉巴马州海角南部边缘的山脊,并在大陆-海洋边界处的弱过渡壳中形成了伊帕坦海洋岩石圈。新形成的向西倾斜的俯冲带的回滚导致了覆盖的劳伦板块内的扩展和后弧扩展,导致形成了双峰型多火山Hillabee Greenstone(阿拉巴马州-乔治亚州),Pumpkinvine Creek地层(乔治亚州)以及其他与弧后的亲缘关系沿着阿巴拉契亚山脉向东北方向的构造打击的火山岩。 Iapetan海底继续向西俯冲,在Laurentian边缘减弱之下,导致广泛的超俯冲作用,侵入了阿拉巴马州东部蓝脊和佐治亚州以及更远东北部的边缘裂谷盆地和末梢尾缘沉积物。不断演化的后弧中寒武纪和奥陶纪陆架地层隆升导致南部阿巴拉契亚布隆特-塔科尼克碎屑楔沉积,沿希拉比弧后向西(克拉通面)侧产生基底内隆升,并可能在该地区形成了逆冲带。在弧后演化的收缩阶段,弧后大陆边缘与岩石圈压缩有关。在阿拉巴马州,佐治亚州和更东北的奥陶纪增生造山作用(Taconic造山运动)之后,塔拉迪加群在志留纪(?)沉积到最早的密西西比(?)。 )表示Laurentian货架保证金的最外侧部分已经稳定。然而,沿着阿拉巴马州海角的最新泥盆纪-密西西比河碰撞导致沿着薄薄的逆冲断层,希拉比逆冲,在塔拉迪加群的邻近泥盆纪最早的密西西比(?)陆架地层上安置了希拉比绿岩地形。 Ouachita弧与Laurentian边缘之间发生碰撞的结果。沿着变质前的Hillabee推力运动之后,进行性的地热变质作用既影响了合并的Talladega带(Hillabee和Talladega-Sylacauga Marble-Kahatchee山脉),又影响了Ashland-Wedowee带。古生代庞氏超大陆导致了洛伦期边缘的伸缩以及裂变后边缘变质沉积物和相关的弧状岩体在变质后的霍林斯线下盘双工逆冲系统上的塔拉迪加带上的位置。

著录项

  • 作者

    Barineau, Clinton Ivan.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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