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首页> 外文期刊>Tectonics >Geochronological and structural constraints on the Cretaceous thermotectonic evolution of the Kraishte zone, western Bulgaria
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Geochronological and structural constraints on the Cretaceous thermotectonic evolution of the Kraishte zone, western Bulgaria

机译:保加利亚西部克雷什特地区白垩纪热构造演化的年代学和构造约束

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摘要

In the Kraishte region, near the junction of the Balkanides and Dinarides, late Early Cretaceous compression led to the thrusting of the Morava unit over the Struma unit. Structural investigations, combined with zircon fission track and ~(40)Ar/~(39) Ar analyses, have been used to reconstruct the geological history of the area and to clarify the original tectonic position of the main units before Cenozoic extension. The results show that Early Cretaceous lower amphibolite facies metamorphism and deformation in the Osogovo-Lisets Metamorphic Complex were related to top-to-the-NE directed nappe stacking, whereas the deeper parts of the allochthonous Morava unit experienced low-grade metamorphic overprint at temperatures >~260℃. The structurally intermediate Struma Diorites and their Mesozoic cover experienced temperatures between ~170℃ and 300℃. Thrusting of the Morava onto the Struma unit started probably in Valanginian times (140-136 Ma), soon after the cessation of preorogenic to synorogenic turbidite sedimentation on Struma. The metamorphic peak was reached before 112 Ma. Subsequent extension-related cooling of both units was probably accompanied by the formation of low-angle normal faults.
机译:在克雷什特地区,靠近巴尔干尼德斯和第纳里德斯交界处,早白垩世的压缩导致摩拉瓦(Morava)单元在斯特鲁玛(Struma)单元上的逆冲作用。结合锆石裂变径迹和〜(40)Ar /〜(39)Ar分析,进行了结构研究,以重建该地区的地质历史,并阐明了新生代伸展前主要单元的原始构造位置。结果表明,Osogovo-Lisets变质复合体中的早白垩纪下部闪石岩相变质和变形与从顶向NE定向的推覆叠置有关,而在温度下,异源Morava单元的较深部分经历了低品位的叠印。 >〜260℃。结构上的Struma Diorites及其中生代覆盖层经历的温度在〜170℃至300℃之间。在Valumainian时代(140-136 Ma),在Struma上的前成因浊浊沉积停止之后,摩拉瓦开始向Struma单元推进。变质峰在112 Ma之前达到。随后两个单元与扩展有关的冷却可能伴随着低角度法向断层的形成。

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  • 来源
    《Tectonics》 |2010年第2期|P.TC2002.1-TC2002.19|共19页
  • 作者单位

    Institute of Geology and Palaeontology, Basel University, Bernoullistrasse, 32, CH-4056 Basel, Switzerland;

    rnGeology Institute, ETH Zurich and Zuerich University, Sonneggstrasse 5, CH-8092 Zuerich, Switzerland;

    rnGeology Institute, ETH Zurich and Zuerich University, Sonneggstrasse 5, CH-8092 Zuerich, Switzerland;

    rnGeology Institute, ETH Zurich and Zuerich University, Sonneggstrasse 5, CH-8092 Zuerich, Switzerland Institute of Geology and Palaeontology, Basel University, Basel, Switzerland;

    rnFaculty of Geology and Geography, University Kliment Ochridski, Boulevard Tsar Osvoboditel, 15, 1000 Sofia, Bulgaria;

    rnBureau for Geology and Hydrology, Carl-Zuckmayer-Str. 1, A-5020 Salzburg, Austria Department for Geography and Geology, University Salzburg, Salzburg, Austria;

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