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Mesoproterozoic tectonic evolution of southwestern North America: Protracted intracratonic deformation, sedimentation, and differential exhumation in Grand Canyon and the Rocky Mountain region.

机译:北美西南部的中元古代构造演化:大峡谷和落基山地区长期的克拉通形变,沉积和不同的掘出。

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摘要

The Unkar Group of the Grand Canyon Supergroup is one of the best-preserved remnants of Mesoproterozoic sedimentary rocks in the southwestern United States. It provides an exceptional record of intracratonic basin formation and associated tectonics kinematically compatible with protracted "Grenville-age" NW-directed shortening. New U/Pb age determinations from tephra at the base of the Unkar Group date the onset of deposition at ca. 1254 Ma. 40 Ar/39Ar Kfeldspar thermochronology in Grand Canyon indicates that basement rocks cooled through 150°C between about 1300 and 1250 Ma, refining exhumation rates of basement rocks just prior to Unkar deposition. Abrupt thickness and facies changes in conglomerate and dolomite of the Bass Formation associated with NE-striking monoclinal flexures indicate NW-directed syn-sedimentary contraction at about 1250 Ma. A large disconformity (∼75 m.y. duration) is inferred between lower and upper Unkar Group and is located below the upper Hakatai Shale as documented by detrital zircons. A second style of Unkar Group deformation involved the development of half grabens and full grabens that record NE-SW extension on NW-striking, high-angle normal faults. Several observations indicate that NW-striking normal faulting was concurrent with upper Unkar deposition, mafic magmatism and early Nankoweap deposition: (1) Intraformational faulting in the Bass Formation, (2) Intraformational faulting in the 1.07 Ga (Rb/Sr date) Cardenas Basalt and lower Nankoweap Formation, (3) syntectonic relationships between Dox deposition and 1104 Ma (new Ar/Ar date) diabase intrusion, and (4) an angular unconformity between Unkar Group and Nankoweap strata. The two tectonic phases affecting the Unkar Group (∼1250 Ma and ∼1100 Ma) provide new insight into tectonics of southern Laurentia: (1) Laramide-style (monoclines) deformation in the continental interior at 1250 Ma records Grenville-age shortening; (2) 1.1 Ga detrital muscovite (Ar/Ar) and zircon (U/Pb) indicate that an Unkar Group source in the Grenville highlands during development of NW-striking extensional basins. We conclude that far-field stresses related to Grenville orogenesis (NW shortening and orthogonal NE-SW extension) dominated the sedimentary and tectonic regime of southwestern Laurentia from 1.25 to 1.1 Ga.; The dominant structural grains of the Ancestral Rockies and Laramide Rockies (N-S and NW-trending) represent the reactivation of Proterozoic fault systems that formed during regional intracratonic deformation in the Mesoproterozoic and Neoproterozoic. 40Ar/39Ar K-feldspar thermochronology provides a test of this hypothesis by resolving the thermal history of different crustal blocks in the 150°--300°C temperature range.
机译:大峡谷超群的恩卡群是美国西南部中元古界沉积岩中保存最完好的残余物之一。它提供了克拉通盆地内形成的特殊记录,并且在运动学上与长期“西北格林威治”的“格伦维尔时代”缩短相兼容。在Unkar组的底下,来自天牛属的新的U / Pb年龄测定可追溯到大约20世纪30年代开始沉积。 1254马。大峡谷的40 Ar / 39Ar Kfeldspar热年代学表明,基底岩石在1300到1250 Ma之间通过150°C冷却,提炼了Unkar沉积之前的基底岩石的发掘速率。与NE冲击的单斜弯曲相关的巴斯地层的砾岩和白云岩的厚度和相的突变表明NW导向的同沉积沉积在约1250 Ma处收缩。下部和上部的Unkar组之间推断出较大的不一致性(持续时间约75 m。),位于碎屑锆石所记载的Hakatai页岩上部。 Unkar Group变形的第二种类型涉及半抓斗和全抓斗的开发,这些抓斗记录了NW撞击大角度正断层上NE-SW的延伸。几项观察结果表明,西北走向的正断层与上层Unkar沉积,镁铁质岩浆作用和Nankoweap早期沉积同时发生:(1)巴斯组内的内部构造断裂,(2)1.07 Ga(Rb / Sr日期)Cardenas玄武岩上的内部构造断裂。较低的Nankoweap地层,(3)Dox沉积与1104 Ma(新的Ar / Ar日期)辉绿岩侵入之间的构造关系,以及(4)Unkar Group与Nankoweap地层之间的角度不整合。影响Unkar组的两个构造相(约1250 Ma和约1100 Ma)提供了关于南部劳伦西亚构造的新见解:(1)1250 Ma时大陆内部的拉拉米特型(单斜系)变形记录了格林维尔时代的缩短; (2)1.1 Ga碎屑白云母(Ar / Ar)和锆石(U / Pb)表明,在西北走向的伸展盆地发育过程中,格伦维尔高地的Unkar群源。我们得出的结论是,与Grenville造山运动有关的远场应力(西北缩短和正交NE-SW扩展)主导了西南Laurentia在1.25至1.1 Ga的沉积和构造状态。祖先洛矶和拉拉amide洛矶(N-S和NW趋势)的主要结构晶粒代表了中元古代和新元古代区域克拉通变形期间形成的元古代断层系统的再活化。 40Ar / 39Ar钾长石热年代学通过解析150°--300°C温度范围内不同地壳块的热历史来验证这一假设。

著录项

  • 作者

    Timmons, J. Michael.;

  • 作者单位

    The University of New Mexico.;

  • 授予单位 The University of New Mexico.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 381 p.
  • 总页数 381
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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