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Tectono-magmatic interactions and extensional folding in the Union Pass area, northern Colorado River extensional corridor, northwest Arizona.

机译:亚利桑那州西北部科罗拉多河北部伸展走廊的联合通道地区构造-岩浆相互作用和伸展褶皱。

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摘要

Field and laboratory studies define the geology of the Union Pass area (NW Arizona) and elucidate both links between magmatism and extension and origins of folds in Miocene strata. The Union Pass area lies within the Colorado River extensional corridor (CREC) of the Basin and Range province and contains well-exposed Miocene volcanic centers, multiple generations of faults, and extensional folds. The advance of major extension through the CREC stalled ∼18.5--16 Ma near Union Pass, coincident with development of the volcanic centers. Major faulting was likely preempted by upper-crustal magma bodies that elevated the brittle-ductile transition, altered local stress fields, accommodated extensional strain by diking, and lacked inherited structural flaws. Diking locked some early normal faults and transferred strain to a set of antithetic faults. Overlapping, opposed fault systems produced an accommodation zone containing extensional folds. Structural analysis indicates clockwise rotation of principal strain axes in the CREC by ∼16 Ma.
机译:野外研究和实验室研究确定了联合关口地区(亚利桑那州西北部)的地质情况,并阐明了中新世地层的岩浆作用和伸展与褶皱成因之间的联系。联合通道地区位于盆地和山脉省的科罗拉多河延伸走廊(CREC)内,包含暴露良好的中新世火山中心,多代断层和伸展褶皱。通过CREC进行的大范围扩张的进展在联合通行证附近停滞了约18.5--16 Ma,这与火山中心的发展相吻合。上地壳岩浆体可能会抢占主要断层,这些岩浆体会提高脆性-韧性转变,改变局部应力场,通过堤坝来适应伸展应变以及缺乏遗传的结构缺陷。堤防锁定了一些早期的正常断层,并将应变转移到一系列对立断层上。重叠的相对断层系统产生了一个包含伸展褶皱的适应带。结构分析表明,CREC中主要应变轴的顺时针旋转约为16 Ma。

著录项

  • 作者

    Murphy, Ryan T.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Geology.
  • 学位 M.S.
  • 年度 2004
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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