首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Combined analysis of faults and deformation bands reveals the Cenozoic structural evolution of the southern Bükk foreland (Hungary)
【24h】

Combined analysis of faults and deformation bands reveals the Cenozoic structural evolution of the southern Bükk foreland (Hungary)

机译:断层和变形带的综合分析揭示了南部比克前陆(匈牙利)的新生代构造演化

获取原文
获取原文并翻译 | 示例
           

摘要

A combination of fault slip data and deformation band analysis allows the separation of 8 deformation phases (D1–D8) in the southern foreland of the Bükk Mts., NE Hungary. The newly defined D1 phase is characterised by NE–SW compression which is hard to integrate into the Cenozoic evolution of the area. The D2a is also a new stress state which was a NE–SW syn-sedimentary extension of Late Oligocene age. The coeval D2b stress state is characterised byNW–SE compression andwas responsible for the (partly syn-sedimentary) tilting and erosion of the Oligocene sediments during Late Oligocene to earliest Miocene. D3 corresponds to E–Wcompression and perpendicular extension. Itwas followed by NE–SW (D4) andWNW–ESE extension (D5) which corresponds to the main rifting phases of the Pannonian Basin system from the late Early to Mid-Miocene (17.3–15Maand 15–11.6 Ma, respectively). It was interrupted by a short inversion (D6) of NE–SW to ENE–WSW compression at latest Mid- Miocene to earliest Late Miocene. Extension and major tilting were renewed in the early Late Miocene (D7). D8 shows NW–SE compression during latest Miocene to Pliocene when the Bükk Mts. started to be uplifted. Deformation bands were formed during several of the established tectonic phases. Combined analysis of deformation bands and fault slip data permitted the unraveling of the evolution of deformation bands in connection with deformation mechanism, burial depth and cumulative displacement. We suggest that the less destructive type of deformation bands is the oldest ones, and were formed at the shallowest burial and accumulated the smallest total displacement. The more cataclastic the deformation bands are, the greater the total displacement and deeper burial depth that can be observed. With progressive burial and/or displacement, deformation bands evolved into discrete fault slip surface.
机译:结合断层滑动数据和变形带分析,可以分离匈牙利东北部比克山南部前陆的8个变形阶段(D1-D8)。新定义的D1相以NE–SW压缩为特征,很难整合到该地区的新生代演化中。 D2a也是新的压力状态,是晚渐新世时代的NE-SW同沉积期延长。新生代的D2b应力状态以NW–SE压缩为特征,是渐新世晚期至最早的中新世渐新世沉积物(部分为沉积沉积)的倾斜和侵蚀的原因。 D3对应于E–W压缩和垂直延伸。随后是NE–SW(D4)和WNW–ESE扩展(D5),这对应于Pannonian盆地系统从早期到中新世中期(分别为17.3-15Ma和15-11.6Ma)的主要裂陷阶段。在最近的中新世至最早的中新世,NE-SW向ENE-WSW压缩进行了短暂的反转(D6)而中断了该过程。在中新世晚期(D7)更新了伸展和大倾角。 D8显示在BükkMts的中新世至上新世期间,NW–SE压缩。开始被提升。在几个已建立的构造阶段中形成了变形带。结合变形带和断层滑动数据的分析,可以揭示变形带与变形机制,埋藏深度和累积位移的关系。我们认为,破坏性较小的形变带是最古老的形变带,形成于最浅的埋藏地,累积的位移最小。变形带越断裂,可以观察到的总位移越大,埋藏深度越深。随着逐渐的埋藏和/或位移,变形带演化成离散的断层滑动面。

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