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首页> 外文期刊>International Geology Review >High-Pressure Metamorphism in the Texas Grenville Orogen: Mesoproterozoic Subduction of the Southern Laurentian Continental Margin
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High-Pressure Metamorphism in the Texas Grenville Orogen: Mesoproterozoic Subduction of the Southern Laurentian Continental Margin

机译:德克萨斯州格伦维尔造山带中的高压变质作用:南劳伦地区大陆边缘的中元古代俯冲作用

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摘要

Collisional orogenesis in the Llano Uplift of central Texas during the late Mesoproterozoic drove metamorphism that comprised both an initial high-pressure (HP) phase (610-775 deg C at 1.4-2.4 GPa) and a subsequent moderate-pressure (MP) phase (approx 700 deg C at approx 0.7 GPa). A later, low-pressure overprint (525-625 deg C at 0.3 GPa) took place under largely static conditions. Evidence for HP metamorphism is geographically widespread, but confined principally to boudins of mafic eclogite encased in felsic gneisses. The geographic distribution of P-T conditions for HP metamorphism inferred from the eclogites, combined with evidence from the relative degrees of homogenization of growth zoning in garnet from both eclogites and felsic gneisses, suggests a general increase from northeast to southwest in depths of burial during HP metamorphism. Exhumation of HP rocks to shallower depths prior to MP metamorphism appears to have been rapid: ages for the two phases of metamorphism overlap, on the basis of the very limited data now available. The region's early metamorphic history is best explained by southwestward subduction of the Laurentian continental margin during collision with a still-unidentified continental mass, followed by buoyancy-driven uplift to lower crustal levels while collisional contraction continued.
机译:中生代晚期晚期德克萨斯中部的拉诺隆升的碰撞造山带动了变质作用,该变质作用包括初始高压(HP)阶段(在1.4-2.4 GPa时为610-775℃)和随后的中压(MP)阶段(在约0.7 GPa下约700摄氏度)。后来,低压套印(在0.3 GPa下为525-625摄氏度)在很大程度上是静态的。 HP变质的证据在地理上是广泛的,但主要限于包裹在长片麻岩中的镁铁质榴辉岩的布丁。从榴辉岩推断出HP变质的PT条件的地理分布,再加上榴辉岩和长英质片麻岩在石榴石中生长带的相对均质化程度的证据,表明在HP变质期间,从东北向西南埋藏深度普遍增加。在MP变质之前,将HP岩石挖掘到较浅的深度似乎是很快的:根据目前可获得的非常有限的数据,变质的两个阶段的年龄重叠。该区域的早期变质史最好用劳伦斯大陆边缘向西南向俯冲的过程来解释,当时该大陆边缘仍与一个尚未确定的大陆块发生碰撞,随后由浮力驱动的隆升作用使地壳水平降低,而碰撞收缩仍在继续。

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