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Unravelling the development of regional-scale shear zones by a multidisciplinary approach: The case study of the Ferriere-Mollieres Shear Zone (Argentera Massif, Western Alps)

机译:通过多学科方法解开区域规模剪力区的发展:Ferriere-Molleieres剪力区的案例研究(Argentera Massif,Western Alps)

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摘要

Shear zone behavior is mainly controlled by deformation regime (brittle versus ductile), deformation temperature, strain rate and magnitude, and rheology of the deformed rocks. If a gradient of strain is established across a shear zone, softening phenomena can produce progressive localization of deformation in its core, resulting in the shear zone maintaining a constant thickness with increasing strain. In contrast, strain hardening processes may induce migration of deformation into the wall-rocks, causing an increase in shear zone thickness. In the Western Alps we have studied a NW-SE striking steeply dipping km-scale shear zone, the Ferriere-Mollières Shear Zone (FMSZ), that cross-cuts Variscan migmatites in the Argentera External Crystalline Massif. The shear zone is characterized by a deformation gradient, with strain increasing toward the center of the shear zone which we interpret to be associated with strain softening during Variscan retrograde metamorphism. In this study, by combining structural and microstructural analyses with quartz fabric analysis, quartz palaeopiezometry and petrochronology, we have identified three main stages of shear zone development, with each stage characterized by specific age, temperature and deformation regime. Stage I occurred between ~340 Ma and ~330 Ma under a temperature range of ~610 - 590 °C with a prevalent (76%–65%) component of pure shear deformation; stage II occurred between ~ 330 and 320 Ma at temperatures between ~ 530 and 480 °C with a decrease in the component of pure shear (73%–49%); stage III developed from ~320 to 300 Ma under temperature conditions between ~ 500 and 420 °C with a prevalent component of simple shear (pure shear of 39%–31%). The FMSZ is a new example of a strain-softening and long-lasting regional-scale shear zone, that may prove to be a useful natural study area for future research on processes operating in large-scale shear zones. We argue that the integration of multiple analytical techniques is essential in the study of such regional-scale shear zones and should be regarded as a standard approach.
机译:剪切区域行为主要由变形制度(脆性与延性),变形温度,应变率和幅度和变形岩石的流变学控制。如果在剪切区域建立菌株的梯度,则软化现象可以在其芯中产生变形的逐渐定位,导致剪切区域保持恒定的厚度随着应变的增加。相反,应变硬化过程可以诱导变形迁移到壁岩中,从而导致剪切区厚度的增加。在西阿尔卑斯山脉中,我们研究了一个NW-SE尖锐的尖锐跛行KM型剪切区,Ferriere-Mollières剪切区(FMSZ),在Argentera外结晶Massif中交叉削减了Variscan Migmatites。剪切区的特征在于变形梯度,其中应变朝向剪切区的中心增加,我们解释了在ramiscan逆行变质期间与菌株软化相关。在这项研究中,通过将结构和微观结构分析与石英织物分析,石英古素曲线测压和汽油素相结合,我们已经确定了剪切区发展的三个主要阶段,每个阶段都具有特定年龄,温度和变形制度的特征。在〜610-590°C的温度范围内发生〜340 mA和〜330 mA之间发生的阶段,具有普遍的剪切变形的普遍(76%-65%); 〜330和320 mA之间的阶段II在〜530和480℃之间的温度下,纯剪切成分减少(73%-49%);在〜500和420°C之间的温度条件下,在〜500和420°C的温度条件下开发了〜320至300mA的阶段,具有简单的剪切(纯剪切39%-31%)。 FMSZ是应变软化和持久的区域规模剪切区的一个新例子,可能被证明是未来对大型剪切区运行过程的未来研究的有用自然研究领域。我们认为,多种分析技术的整合在对这种区域鳞片剪力区的研究中至关重要,并且应被视为标准方法。

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  • 来源
    《Journal of structural geology》 |2021年第8期|104399.1-104399.21|共21页
  • 作者单位

    IGG-CNR PAVIA Via Ferrata 1 27100 Pavia Italy|Dipartimento di Scienze Della Terra Università di Torino Via Valperga Caluso 35 Torino Italy;

    Dipartimento di Scienze Della Terra Università di Torino Via Valperga Caluso 35 Torino Italy;

    Dipartimento di Scienze Della Terra Università di Torino Via Valperga Caluso 35 Torino Italy|IGG-CNR PISA Via Moruzzi 1 56124 Pisa Italy;

    Department of Geosciences Virginia Tech. Blacksburg VA 24061 USA;

    Department of Earth Science University of California Santa Barbara Santa Barbara CA 93106 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Argentera Massif; Monazite petrochronology; Palaeopiezometry; Quartz fabric; Transpression; Vorticity;

    机译:argentera massif;monazite petrochronology;古代曲线测量术;石英织物;变形;漩涡;

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