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A Cordilleran model for the evolution of Avalonia

机译:阿瓦隆进化的山脉模型

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Striking similarities between the late Mesoproterozoic-Early Paleozoic record of Avalonia and the Late Paleozoic-Cenozoic history of western North America suggest that the North American Cordillera provides a modem analogue for the evolution of Avalonia and other peri-Gondwanan terranes during the late Precambrian. Thus: (1) The evolution of primitive Avalonian arcs (proto-Avalonia) at 1.2-1.0 Ga coincides with the amalgamation of Rodinia, just as the evolution of primitive Cordilleran arcs in Panthalassa coincided with the Late Paleozoic amalgamation of Pangea. (2) The development of mature oceanic arcs at 750-650 Ma (early Avalonian magmatism), their accretion to Gondwana at ca. 650 Ma, and continental margin arc development at 635 570 Ma (main Avalonian magmatism) followed the breakup of Rodinia at ca. 755 Ma in the same way that the accretion of mature Cordilleran arcs to western North America and the development of the main phase of Cordilleran arc magmatism followed the Early Mesozoic breakup of Pangea. (3) In the absence of evidence for continental collision, the diachronous termination of subduction and its transition to an intracontinental wrench regime at 590-540 Ma is interpreted to record ridge-trench collision in the same way that North America's collision with the East Pacific Rise in the Oligocene led to the diachronous initiation of a transform margin. (4) The separation of Avalonia from Gondwana in the Early Ordovician resembles that brought about in Baja California by the Pliocene propagation of the East Pacific Rise into the continental margin. (5) The Late Ordovician-Early Silurian sinistral accretion of Avalonia to eastern Laurentia emulates the Cenozoic dispersal of Cordilleran terranes and may mimic the paths of future terranes transferred to the Pacific plate. This close similarity in tectonothermal histories suggests that a geodynamic coupling like that linking the evolution of the Cordillera with the assembly and breakup of Pangea, may have existed between Avalonia and the late Precambrian supercontinent Rodinia. Hence, the North American Cordillera is considered to provide an actualistic model for the evolution of Avalonia and other peri-Gondwanan terranes, the histories of which afford a proxy record of supercontinent assembly and breakup in the late Precambrian. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 172]
机译:阿瓦龙的中元古代-早古生代记录与北美西部的晚古生代-新生代历史之间惊人的相似之处表明,北美山脉为前寒武纪晚期的阿瓦龙和冈瓦纳周围其他地块的演化提供了现代的类似物。因此:(1)在1.2-1.0 Ga的原始阿瓦隆弧(原始阿瓦隆)的演化与Rodinia的合并相吻合,就像Panthalassa中原始Cordilleran弧的演化与Pangea的晚古生代合并相吻合。 (2)在750-650 Ma(阿瓦隆早期岩浆作用)发育成熟的海洋弧,并在大约30年代增加到冈瓦纳。约650 Ma,大陆边缘弧发育为635 570 Ma(阿瓦隆岩浆主成因),随后Rodinia于约270年解体。 755 Ma的方式与在Pangea早期中生代破裂之后向北美西部吸收成熟的Cordilleran弧和在北部西部形成Cordilleran弧岩浆作用的主要阶段相同。 (3)在没有发生大陆碰撞的证据的情况下,俯冲的历时终止及其在590-540 Ma过渡到陆内扳手系统的解释与北美与东太平洋的碰撞一样,记录了脊沟的碰撞。渐新世的上升导致了转换余量的历时启动。 (4)奥陶纪早期奥瓦隆与冈瓦纳的分离类似于东太平洋上升到上新世向大陆边缘的上新世传播在加利福尼亚州下加利福尼亚州造成的。 (5)阿瓦尼亚晚期奥陶纪-志留纪早期向左Laurentia的窦性增生模拟了山脉山脉的新生代扩散,并可能模拟了未来山脉转移到太平洋板块的路径。构造热历史的这种相似性表明,在阿瓦隆山脉和晚寒武纪前超大陆罗迪尼亚之间可能存在着一种类似地球动力学的耦合,这种耦合将科尔迪勒拉的演化与潘盖亚的装配和破裂联系起来。因此,北美山脉被认为为阿瓦隆和其他贡多瓦南山脉的演化提供了现实模型,其历史提供了前寒武纪晚期超大陆组装和破裂的代理记录。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:172]

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