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首页> 外文期刊>GSA Bulletin >Petrologic and 40Ar/39Ar geochronological constraints on the middle to late Paleozoic thermotectonic history of the southern Connecticut Valley zone, New England Appalachians
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Petrologic and 40Ar/39Ar geochronological constraints on the middle to late Paleozoic thermotectonic history of the southern Connecticut Valley zone, New England Appalachians

机译:新英格兰阿巴拉契亚南部康涅狄格河谷地区中晚期古生代热构造史的岩石学和40Ar / 39Ar地质年代学约束

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摘要

New 40Ar/39Ar data from The Straits Schist and interlayered formations in the southernmost Connecticut Valley zone of the northern Appalachian orogen, together with published 40Ar/39Ar and U-Pb data, are used to account for relatively rapid Devonian (post-Acadian) cooling of gneisses and schists near the Waterbury dome and slower Devonian through Permian cooling in structurally higher schists south of the dome. Metamorphic hornblende 40Ar/39Ar cooling ages range from 374 Ma 10 km south of the Waterbury dome to 324 Ma 15 to 40 km south of the dome. Muscovite 40Ar/39Ar cooling ages also decrease to the south, from 318 to 254 Ma. The ages from the southernmost Connecticut Valley zone are as much as 50 and 100 m.y. younger than hornblende and muscovite, respectively, from the Waterbury dome. The difference in cooling histories between the Waterbury dome and southern Connecticut Valley zone is interpreted to be a result of relatively slower cooling in the southern Connecticut Valley zone following Acadian metamorphism and/or a static Pennsylvanian (Alleghanian) thermal event that reset the muscovite K/Ar system, promoted growth of fine-grained monazite, and resulted in partial melting of the crust beneath the southern Connecticut Valley zone. Such a thermal event would have been contemporaneous with Alleghanian orogenesis in Appalachian terranes in southeastern New England, but the mechanism for generating a Pennsylvanian thermal pulse is still unknown.
机译:来自Straits Schist的新 40 Ar / 39 Ar数据以及 最南端的康涅狄格谷带中的层状 地层阿巴拉契亚北部造山带与已发布的 40 Ar / 39 Ar 和U-Pb数据一起用于解释相对较快的泥盆纪在圆顶南部以结构性较高的片岩为中心的沃特伯里 球体附近的片麻岩和片岩的(后阿卡迪亚)冷却,通过二叠纪的冷却使泥盆纪的泥盆纪变慢。变质的角闪石 40 Ar / 39 Ar 冷却年龄范围是沃特伯里 穹顶以南10公里处的374 Ma。马在圆顶以南15至40公里。白云母 40 Ar / 39 Ar 冷却年龄也向南部降低,从318 Ma降至254 Ma。 年龄来自最南端的康涅狄格谷地带的 分别为50和100 my分别比沃特伯里穹顶的角闪石和白云母年轻, 。沃特伯里穹顶和康涅狄格州南部 谷地区之间的冷却历史差异被认为是康涅狄格南部谷地的 冷却相对较慢的结果。 Acadian 变质和/或静态宾夕法尼亚州(Alleghanian)热 事件之后的区域,该事件重置了白云母K / Ar系统,促进了细粒的生长 粒独居石,导致 康涅狄格南部谷地带下方的地壳部分熔化。这样的热事件与新英格兰东南部阿巴拉契亚山脉中的Alleghanian 造山作用是同时发生的,但产生宾夕法尼亚热脉冲的机制 sup> 仍然未知。

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  • 来源
    《GSA Bulletin 》 |1997年第2期| 164-175| 共12页
  • 作者单位

    Department of Geological Sciences, University of Kentucky, Lexington, Kentucky 40506-0053;

    Department of Geological Sciences, University of Kentucky, Lexington, Kentucky 40506-0053;

    Department of Geological Sciences, University of Kentucky, Lexington, Kentucky 40506-0053;

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