首页> 外文期刊>Swiss journal of geosciences >Ivrea mantle wedge, arc of the Western Alps, and kinematic evolution of the Alps-Apennines orogenic system
【24h】

Ivrea mantle wedge, arc of the Western Alps, and kinematic evolution of the Alps-Apennines orogenic system

机译:伊夫雷亚地幔楔,西阿尔卑斯山弧线和阿尔卑斯-亚平宁山脉造山系统运动学演化

获取原文
获取原文并翻译 | 示例
           

摘要

The construction of five crustal-scale profiles across the Western Alps and the Ivrea mantle wedge integrates up-to-date geological and geophysical information and reveals important along strike changes in the overall structure of the crust of the Western Alpine arc. Tectonic analysis of the profiles, together with a review of the existing literature allows for proposing the following multistage evolution of the arc of the Western Alps: (1) exhumation of the mantle beneath the Ivrea Zone to shallow crustal depths during Mesozoic is a prerequisite for the formation of a strong Ivrea mantle wedge whose strength exceeds that of surrounding mostly quartz-bearing units, and consequently allows for indentation of the Ivrea mantle wedge and eastward back-thrusting of the western Alps during Alpine orogeny. (2) A first early stage (pre-35 Ma) of the West-Alpine orogenic evolution is characterized by top-NNW thrusting in sinistral transpression causing at least some 260 km displacement of internal Western Alps and E-W-striking Alps farther east, together with the Adria micro-plate, towards N to NNW with respect to stable Europe. (3) The second stage (35-25 Ma), further accentuating the arc, is associated with top-WNW thrusting in the external zones of the central portion of the arc and is related to the lateral indentation of the Ivrea mantle slice towards WNW by some 100-150 km. (4) The final stage of arc formation (25-0 Ma) is associated with orogeny in the Apennines leading to oroclinal bending in the southernmost Western Alps in connection with the 50 degrees counter-clockwise rotation of the Corsica-Sardinia block and the Ligurian Alps. Analysis of existing literature data on the Alps-Apennines transition zone reveals that substantial parts of the Northern Apennines formerly suffered Alpine-type shortening associated with an E-dipping Alpine subduction zone and were backthrusted to the NE during Apenninic orogeny that commences in the Oligocene.
机译:横跨西阿尔卑斯山和Ivrea地幔楔的五个地壳尺度剖面的构造整合了最新的地质和地球物理信息,并揭示了西阿尔卑斯山地壳整体结构沿走向变化的重要意义。通过对剖面的构造分析以及对现有文献的回顾,可以提出西阿尔卑斯山弧的以下多阶段演化:(1)在中生代,将伊夫雷亚区下方的地幔掘出到浅层地壳是形成岩石的先决条件。形成一个坚固的Ivrea地幔楔,其强度超过了周围大多数含石英的单元的强度,因此可以在阿尔卑斯造山运动中压入Ivrea地幔楔并向西阿尔卑斯山向东反冲。 (2)西阿尔卑斯山造山带演化的第一个早期阶段(35 Ma之前)的特征是,顶向西北偏西逆冲推动了窦性压转,导致内部西阿尔卑斯山和更偏向西向EW的阿尔卑斯山至少向东偏移了约260 km使用Adria微孔板,就稳定的欧洲而言,从N到NNW。 (3)第二阶段(35-25 Ma),进一步加重了弧,与在弧的中心部分的外部区域中的顶部WNW推力有关,并且与Ivrea地幔切片向WNW的侧向压痕有关大约100-150公里(4)电弧形成的最后阶段(25-0 Ma)与亚平宁山脉的造山作用有关,导致西阿尔卑斯山最南端的口斜弯曲与科西嘉-撒丁岛地块和利古里亚逆时针旋转50度有关阿尔卑斯山对有关阿尔卑斯山-亚平宁山脉过渡带的现有文献数据的分析表明,北部亚平宁山脉的大部分以前曾经历过与E浸入式阿尔卑斯俯冲带有关的阿尔卑斯型缩短,并在渐新世开始的亚平年造山运动中被反冲到东北。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号