剪切带的地质构造填图和年代学:方法建议

Anny Julieth Forero Ortega, Julián Andrés López Isaza, Nelson Ricardo López Herrera, Mario Andrés Cuéllar Cárdenas, Lina María Cetina Tarazona, Luis Miguel Aguirre Hoyos
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引用次数: 2

摘要

野外记录的岩石变形可以根据露头中保存的构造来表征,这些构造可能与广泛的不连续带有关,称为断层和剪切带。这些构造构造的地质构造填图和年代学不仅是构造建模的重要课题,也是重建国家领土地质演化的重要课题。断层和剪切带的分析方法建议基于八个步骤,包括:1)构造发育的地质背景的定义;2)断层和剪切带的构造和岩性特征的光解译、图像地质处理和地质构造填图;3)野外定向样品岩相分析;4)通过三维有限应变分析量化应变方向和几何形状,通过涡量分析量化变形的非共轴性;5) SEM-TEM-EBSD微量分析;6)通过相平衡模型或常规的地温测量法量化变形的P-T条件;7)通过Ar-Ar分析对同动矿物相和糜棱岩进行定年,分别确定构造的活化年龄和变形年龄,并对断层发育的同动方解石晶体实施U-Pb技术;8)利用锆石U-Pb定年法对构造附近的地质元素进行定年,例如与变形事件相关的同动侵入体,利用Ar-Ar法对岩石进行热液蚀变,并对断层附近的块体进行锆石和磷灰石裂变径迹定年,以确定挖掘年龄。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geological-structural mapping and geocronology of shear zones: A methodological proposal
The deformation registered in rocks in the field can be characterized based on the structures preserved in outcrops, which can related be to wide discontinuity zones named faults and shear zones. The geological-structural mapping and the geochronology of these tectonic structures are a topic of great interest not only for tectonic modeling but also for reconstruction of the geological evolution of the national territory. The methodology suggest for the analysis of faults and shear zones is based on eight steps, including: 1) definition of the geological context in which the structure was developed; 2) photointerpretation, image geoprocessing, and geological-structural mapping of the structural and lithological characteristics of the faults and shear zones; 3) petrographic analysis of field-oriented samples; 4) quantification of strain orientation and geometry through 3D finite strain analyses and quantification of non-coaxiliaty of deformation through vorticity analyses; 5) SEM-TEM-EBSD microanalysis; 6) quantification of the P-T conditions of deformation through phase-equilibria modeling or conventional geothermobarometry; 7) dating of syn-kinematic minerals phases and mylonitic rocks through Ar-Ar analyses, in order to determine the reactivation and deformation ages of the structure, respectively, as well as the implementation of the U-Pb technique in syn-kinematic calcite crystals developed in the fault planes; and 8) dating of geological elements adjacent to the structure, such as syn-kinematic intrusive bodies associated with the deformation event using zircon U-Pb dating, rocks hydrothermally altered through Ar-Ar method, and zircon and apatite fission-tracks dating of the blocks adjacent to the faults for determining exhumation ages.
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