RUI:Collaborative Research: Fluid flow metamorphism and strain localization in mid-crustal shear zones
RUI:Collaborative Research: Fluid flow metamorphism and strain localization in mid-crustal shear zones
批准号:
1849664
负责人:
Gabriele Casale
金额:
$7.37万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-08-01 至 2024-07-31
中文摘要
该项目研究了流体、变质作用和变形定位对地壳中部地区(深度大于12公里)断裂带的组成和强度的关系。该项目将重点放在与犹他州拉夫河变质核杂岩相关的韧性断裂带上,以限制断裂期间的流体来源和数量。这项研究结合了野外地质测绘、矿物结构分析、化学分析和分析,以确定沿断层运动的时间。该项目有可能将分析数据与特定的流体来源联系起来,并更好地限制地壳范围内的流体流动。该项目由一名早期职业教师领导,包括硕士研究生和本科生。路易斯安那大学拉斐特分校的第一代和少数族裔大学生也参与其中。该项目包括一项支持北卡罗来纳州西部农村地区K-12教育的外展工作,其中包括本科生开发的地质时间资源。该项目的目标是提高对与变质核杂岩相关的滑脱剪切带中流体-岩石相互作用的理解。含水变质矿物记录了地壳内极深的大气流体的存在。尽管有明确的陨石流体记录,但许多化学和岩石学方面的不一致仍然存在。在造山塌陷过程中,上地壳因脆性正断层作用而变薄,而韧性下地壳则侧向流动。伸展作用的局部化最终导致滑脱剪切带和变质核杂岩的形成。下地壳韧性伸展以高热流、花岗岩侵入和混合片麻岩穹隆为特征,与变质/岩浆流体伴生。在折返过程中,两个流体储集层(岩浆/变质水和来自地表的大气水)之间存在竞争。该项目使用氢和氧稳定同位素数据作为流体来源和流体-岩石交换的示踪剂,以提供大陆伸展期间流体-岩石相互作用的约束。同位素数据被链接到特定的流体来源,以更好地约束地壳规模的流体流动的水文学,以便弥合实验得出的岩石强度和现场观测之间的差距。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This project investigates the relationship between fluids, metamorphism, and localization of deformation on the composition and strength of fault zones in middle regions of the crust (depths greater than 12 kilometers). The project focuses on the ductile fault zone associated with the Raft River metamorphic core complex in Utah, in order to constrain both the source and the amount of fluid during faulting. The study incorporates geologic mapping in the field, analyses of mineral structures, chemical analyses, and analyses to determine the timing of movement along the fault. The project has the potential to tie analytic data to specific fluid sources and better constrain fluid flow at a crustal-scale. This project is led by an early career faculty member and includes Masters-level graduate and undergraduate students. First-generation and minority college students at the University of Louisiana at Lafayette are also involved. The project incorporates an outreach effort to support K-12 education in rural western North Carolina that includes geologic time resources developed by undergraduate students.The goal of this project is to improve the understanding of fluid-rock interaction in detachment shear zones associated with metamorphic core complexes. Hydrous metamorphic minerals record the presence of meteoric fluids at great depths within the crust. Despite the clear record of meteoric fluids down to mid- to lower-crustal depths, many chemical and petrologic inconsistencies remain. During orogenic collapse, the upper crust thins by brittle normal faulting while the ductile lower crust flows laterally. Localization of extension eventually leads to the formation of a detachment shear zone and metamorphic core complex. Ductile extension in the lower crust is characterized by high heat fluxes, granitic intrusion, and migmatitic gneiss domes, associated with metamorphic/magmatic fluids. During exhumation, there is competition between two fluid reservoirs (magmatic/metamorphic and meteoric water from surface sources). This project uses hydrogen and oxygen stable isotope data as tracers of fluid source and fluid-rock exchange to provide constraints on fluid-rock interaction during continental extension. Isotopic data is linked to specific fluid sources to better constrain the hydrology of crustal-scale fluid flow, in order to bridge the gap between experimentally-derived rock strengths, and field observations.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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RUI: Modes of Dome Formation in the Southern Appalachians
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批准号:1524191
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项目类别:Standard Grant
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资助金额:$13.99万
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财政年份:2015
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负责人:Gabriele Casale
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依托单位:
海外基金