结合传统和定量多尺度构造分析,重建岩浆岩基底的构造-变质演化:西阿尔卑斯山登特-布朗什构造体系瓦尔佩林系列的案例

IF 2.6 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY
F. Caso , C.B. Piloni , M. Filippi , A. Pezzotta , E. Fazio , R. Visalli , G. Ortolano , M. Roda , M. Zucali
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引用次数: 0

摘要

由于新技术的不断发展,许多仪器可用于协助不同规模的地质调查。这些技术包括航空摄影测量三维露头建模和定量微观结构分析,在结晶基底研究中非常有用。这篇论文结合了传统和定量多尺度结构分析技术,对瓦尔佩林系列(西阿尔卑斯山登特-布朗什构造体系)的岩浆岩进行了分析。传统的构造分析与从代表性平滑露头的三维模型中提取构造数据相结合。定量微结构分析和矿物化学分析相结合,将结构演化和变质演化联系起来。这种方法可以识别和关联在三个构造-变质阶段形成的叶理。第一个阶段(D1)包括固态变形,与保存在偏闪长岩片麻岩中的偏闪长岩包岩中的早期褶皱(S1)有关。第二种(D2)与辉长岩片麻岩中的主要褶皱(S2)有关,与区域尺度的岩化以及石榴石和堇青石的生长同时发生。第三种(D3)与 S2 的晚期褶皱以及包裹石榴石和堇青石的富含闪长岩的轴向平面折线(S3)的发展有关。最后,这项工作讨论了每种创新方法的利弊,仍然强调了使用人工获取的实地数据作为地面控制的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining traditional and quantitative multiscale structural analysis to reconstruct the tectono-metamorphic evolution of migmatitic basements: the case of the Valpelline Series, Dent-Blanche Tectonic System, Western Alps

Due to the ongoing development of new technologies, many instruments are available to assist geological investigations at different scales. These techniques, including 3D outcrop modelling from aerial photogrammetry and quantitative microstructural analysis are useful in crystalline basements studies. This contribution combines traditional and quantitative multiscale structural analysis techniques to the migmatitic rocks of the Valpelline Series (Dent-Blanche Tectonic System, Western Alps). Conventional structural analysis is integrated with the extraction of structural data from 3D models of representative smooth outcrops. Quantitative microstructural and mineral-chemical analyses are combined to link structural and metamorphic evolution. This approach allows identifying and correlating foliations that developed during three tectono-metamorphic stages. The first (D1) includes solid-state deformation associated with an early foliation (S1) preserved within metabasite boudins enclosed in migmatite gneiss. The second (D2) is related to the dominant foliation in migmatite gneiss (S2), coeval with the regional scale anatexis and growth of garnet and cordierite. The third (D3) is related to the late folding of S2 and the development of a sillimanite-rich axial plane foliation (S3) which wraps around garnet and cordierite. Finally, this work discusses pros and cons of each innovative methodology, still emphasising the importance of using manually acquired field data as ground control.

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来源期刊
Journal of Structural Geology
Journal of Structural Geology 地学-地球科学综合
CiteScore
6.00
自引率
19.40%
发文量
192
审稿时长
15.7 weeks
期刊介绍: The Journal of Structural Geology publishes process-oriented investigations about structural geology using appropriate combinations of analog and digital field data, seismic reflection data, satellite-derived data, geometric analysis, kinematic analysis, laboratory experiments, computer visualizations, and analogue or numerical modelling on all scales. Contributions are encouraged to draw perspectives from rheology, rock mechanics, geophysics,metamorphism, sedimentology, petroleum geology, economic geology, geodynamics, planetary geology, tectonics and neotectonics to provide a more powerful understanding of deformation processes and systems. Given the visual nature of the discipline, supplementary materials that portray the data and analysis in 3-D or quasi 3-D manners, including the use of videos, and/or graphical abstracts can significantly strengthen the impact of contributions.
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