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首页> 外文期刊>Swiss journal of geosciences >Strain Localization In The Morcles Nappe (helvetic Alps, Switzerland)
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Strain Localization In The Morcles Nappe (helvetic Alps, Switzerland)

机译:Morcles Nappe中的应变定位(瑞士阿尔卑斯山)

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摘要

Deformation in orogenic belts is frequently accommodated in calcite-rich lithologies, owing to their relatively low strength, particularly compared to quartz-rich rocks. Here, we investigate the coupling between calcite grain size, the presence and mineralogy of second phases, and crystallographic preferred orientation (CPO) in a transect through deformed limestones, perpendicular to the dominant foliation in the inverted limb of the Morcles nappe of the Swiss Helvetic Alps. Calcite grain size becomes progressively finer as the thrust contact is approached, and there is a concomitant increase in CPO intensity, with the strongest CPO's in the finest-grained, quartz-rich limestones, nearest the thrust contact. To understand the distribution of strain and the extent of strain localization, we compared the paleowattmeter and calcite flow laws from laboratory studies to previously published observations of microstructure at a range of locations, with varying peak metamorphic temperatures, along the Morcles nappe. The strain-rates predicted by extrapolation of these laboratory relationships agree well with the geologic constraints. We then applied the same approach to the samples from the present study. The results indicate that strain became progressively localized towards the thrust contact of the Morcles nappe, leading to an increase in strain rate of > 1 order of magnitude in a zone < 0.50 m thick. For localization to occur system and/or material softening is necessary. If dislocation activity is positively correlated with CPO, then softening cannot have occurred by a complete transition to diffusion creep in the finest grained samples. Rather, softening may have resulted from the formation of CPO, possibly coupled with effects related to the distribution of second phases and the overall geometry of the shear zone.
机译:由于方解石的强度相对较低,特别是与富含石英的岩石相比,造山带中的变形经常被容纳在方解石丰富的岩性中。在这里,我们研究方解石晶粒大小,第二相的存在和矿物学以及横断面通过变形石灰岩的晶体学优选取向(CPO)之间的耦合,该石灰岩垂直于瑞士Helmet莫尔斯推覆倒立肢的主要叶脉。阿尔卑斯山随着接近推力接触,方解石晶粒尺寸逐渐变细,CPO强度随之增加,最细的,富含石英的石灰石中,最接近推力接触的是最强的CPO。为了了解应变的分布和应变局部化的程度,我们将实验室研究中的古瓦特计和方解石流定律与先前发表的沿Morcles推覆物在一定范围内具有不同变质峰温度的位置处的微观结构进行了观察。通过这些实验室关系的外推预测的应变率与地质约束条件非常吻合。然后,我们将相同的方法应用于本研究的样本。结果表明,应变逐渐朝着Morcles尿布的推力接触局部化,从而导致在厚度小于0.50 m的区域中应变率增加了> 1个数量级。为了进行定位,必须进行系统和/或材料软化。如果位错活性与CPO呈正相关,则在最细颗粒的样品中完全过渡到扩散蠕变不会发生软化。相反,软化可能是由于CPO的形成所致,可能还与第二相的分布和剪切带的整体几何形状有关。

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