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首页> 外文期刊>GSA Bulletin >The Dunbar Gneiss-granitoid dome: Implications for early Proterozoic tectonic evolution of northern Wisconsin
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The Dunbar Gneiss-granitoid dome: Implications for early Proterozoic tectonic evolution of northern Wisconsin

机译:邓巴片麻岩-类花岗岩穹顶:对威斯康星州北部元古代的早期构造演化的启示

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摘要

The Dunbar dome in northeastern Wisconsin is a critical structural feature in the early Proterozoic Penokean orogen. It provides exposures of gneisses (Dunbar Gneiss) that structurally underlie the voluminous metavolcanic rocks of northeastern Wisconsin, and exposures of abundant granitoid rocks ranging from tonalite to granite. The granitoid rocks cut both the gneisses in the core and the supracrustal (cover) metavolcanic rocks and were emplaced essentially along the core-cover boundary. The Dunbar Gneiss is calc-alkaline and was derived from volcanic and intrusive rocks of intermediate composition. The various intrusive rocks have calcic, calc-alkaline, and alkali to alkali-calcic compositions, and they progress with time to more SiO2 and K2-rich compositions. U-Pb zircon ages indicate that accumulation of the layered rocks in the core and cover, deformation and metamorphism, and intrusion of the granitoid rocks spanned a relatively short time, 1865–1835 Ma. We interpret the dome as being a large-scale, fold-interference structure resulting from polydeformation modified by diapirism. Northeast-oriented folds (F3) and a related mylonitic foliation (S3), nearly confined to the dome, are superposed on northwest-oriented folds (F2) that developed during regional deformation. In the core-cover boundary, these structures are obliterated by a zone of intense deformation—a mylonitic foliation and a steeply plunging stretching lineation—as much as 500 m wide, which we interpret as resulting from diapirism. Metamorphic zoning is concentric: amphibolite facies in inner parts of the mantle and greenschist facies in the outer part of the mantle. The Wisconsin magmatic terrane, as represented by the rocks in the Dunbar dome, differs from the epicratonic, early Proterozoic sedimentary-volcanic sequence (Marquette Range Supergroup) in Michigan, to the north, in stratigraphy, structure, and volume and composition of igneous rocks. Whereas the basalts in northern Michigan are compositionally similar to continental rift basalts, the volcanic rocks in the Dunbar dome have over-all island-arc compositional affinities. The over-all calc-alkaline compositions of the intrusive rocks are similar to those in magmatic arcs formed at convergent plate-margin settings. Accordingly, we interpret the Wisconsin magmatic terrane as an oceanic-arc complex that was sutured to the North American continent during development of the Penokean orogen. Similar interpretations based on broad regional observations have been proposed previously.
机译:威斯康星州东北部的邓巴穹顶是元古生代Penokean造山带早期的关键结构 特征。它提供 片麻岩(Dunbar Gneiss)的暴露,这些暴露在 威斯康星州东北部的大量变火山岩, 的结构上 到花岗岩。花岗岩质岩既切割了 岩心中的片麻岩,又切割了上壳(覆盖)超火山岩,并且 基本上沿岩心-盖边界分布。邓巴 片麻岩是钙碱性的,来源于中间成分的火山岩和侵入性 岩石。各种侵入岩 具有钙,钙碱性和碱成碱钙组成, 随着时间的推移逐渐发展为更多的SiO 2 和富含K 2 的成分。 U-Pb锆石年龄表明,岩心和覆盖层中的层状岩石 堆积,变形和变质作用,以及花岗岩的侵入 发生的时间相对较短,1865-1835年。 Ma。 我们将圆顶解释为大型的,可折叠的diapirism修正的多形变形导致的干涉 结构。 东北向褶皱(F 3 )和相关的淀粉样叶性 (S 3 )几乎局限于穹顶,叠加在区域变形过程中形成的西北向 褶皱(F 2 )上。在 岩心覆盖层边界中,这些结构被强烈变形的区域 所掩盖(例如,似叶状的叶片和陡峭的 骤降的伸展线)。宽达500 m,我们认为 归因于偏见。变质带 是同心的:地幔内部的闪石相 和地幔外部的绿片岩相。 威斯康星州岩浆地层,以Dunbar圆顶中的岩石 表示,不同于密歇根州 上古生界的早火山沉积层(Marquette Range Supergroup),北部的地层,结构和火成岩的体积 和组成。密歇根州北部的玄武岩与大陆裂谷玄武岩的成分相似,而邓巴穹顶的火山岩具有全部的岛弧成分亲和力。侵入岩的总体钙碱性成分 与在收敛板距设置下形成的岩浆弧 相似。因此,我们 将威斯康星州岩浆地层解释为海洋-电弧复合体 ,在Penokean造山带的发展 中被缝合到了北美大陆。以前已经提出了基于广泛的 区域观测的类似解释。

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  • 来源
    《GSA Bulletin》 |1985年第9期|1101-1112|共12页
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    U.S. Geological Survey, Box 25046, M.S. 912, Denver, Colorado 80225;

    U.S. Geological Survey, Box 25046, M.S. 963, Denver, Colorado 80225;

    U.S. Geological Survey, 954 National Center, Reston, Virginia 22092;

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