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Analysis of the gouldsboro pluton and the fehr granite: Understanding the scales of magmatic processes and partial melt generation from the deep to shallow crust.

机译:戈尔德斯伯勒岩体和菲尔花岗岩的分析:了解从深壳到浅壳的岩浆作用尺度和部分熔体生成。

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摘要

The heterogeneity of the continental crust has a first order control on the dynamics of plate tectonic processes and the compositions of the Earth in both time and space. Heterogeneity can be characterized at a variety of scales and in a multitude of tectonic environments, but it is the links between seemingly disparate tectonic settings and crustal levels that are critical in understanding construction of the continents. The focus of this dissertation work is to apply microtextural, microgeochemical, whole rock geochemical and traditional petrographic techniques to study features in both deep and shallow crustal igneous rocks. The goal of these efforts is to better understand the roles that magmatic processes, mafic-felsic magma interaction, and partial melting have on the evolution of continental crust. Two principal field areas were selected, the Gouldsboro pluton in coastal Maine and the Fehr granite in northern Saskatchewan, Canada, because they each represent end-members of the processes involved with the generation, modification, transport, and emplacement of magmas that build continental crust. Evidence for bimodal magmatism preserved in the Silurian age Gouldsboro pluton has led to a refined model for the construction of shallow crustal magma chambers. Research efforts focused on the Neoarchean Fehr granite and Paleoproterozoic Chipman dike swarm have contributed to the current understanding of the links between high temperature metamorphism (migmitization) and the production of new felsic magmas as well as the rheological and chemical influences of mafic-felsic magma interaction in the deep crust. The results of these combined field and laboratory efforts have demonstrated the important role of mafic-felsic magma interaction on the strength and composition of both deep and shallow continental crust and have contributed to the current understanding of the complex links between deep crustal heterogeneity and bimodal magmatism at shallow crustal levels.
机译:大陆壳的非均质性对板块构造过程的动力学以及地球在时间和空间上的组成具有一级控制。可以在各种规模和多种构造环境中表征非均质性,但是看似完全不同的构造环境和地壳水平之间的联系对于理解这些大陆的构造至关重要。本文的工作重点是运用微观结构,微观地球化学,整体岩石地球化学和传统岩相学技术研究深,浅地壳火成岩的特征。这些努力的目的是更好地了解岩浆作用,镁铁质-长岩浆岩浆相互作用和部分融化对大陆壳演化的作用。选择了两个主要的油田区域,即缅因州沿海地区的Gouldsboro岩体和加拿大萨斯喀彻温省北部的Fehr花岗岩,因为它们各自代表了与形成大陆壳的岩浆有关的过程的最终成员, 。志留纪时期保存的双峰岩浆作用的证据导致了古斯伯勒岩体的构造简化模型,用于构造浅地壳岩浆室。研究重点集中在新古宙Fehr花岗岩和古元古代奇普曼堤防群上,这有助于当前对高温变质(迁移)与新的长质岩浆产生之间的联系以及镁铁质-长石质岩浆相互作用的流变和化学影响的理解。在地壳深处。这些现场和实验室共同努力的结果表明,镁铁质-长英质岩浆相互作用对深部和浅部大陆壳的强度和成分具有重要作用,并有助于当前对深地壳异质性与双峰岩浆作用之间复杂联系的理解。在浅层地壳。

著录项

  • 作者

    Koteas, George Christopher.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Mineralogy.;Plate Tectonics.;Petrology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 215 p.
  • 总页数 215
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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