...
首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >The evolution of the Carpathians-Pannonian system: Interaction between neotectonics, deep structure, polyphase orogeny and sedimentary basins in a source to sink natural laboratory
【24h】

The evolution of the Carpathians-Pannonian system: Interaction between neotectonics, deep structure, polyphase orogeny and sedimentary basins in a source to sink natural laboratory

机译:喀尔巴阡-潘诺尼系统的演化:新构造学,深部结构,多相造山运动和沉积盆地之间的相互作用,成为沉没天然实验室的源头

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The Carpathians-Pannonian Basin system provides a natural laboratory for analysing lithospheric to surface controls on tectonic topography development in a coupled source-to-sink environment. To link processes taking place at depth and at the surface, recent research focused on the interplay between basin evolution, active tectonics, topography evolution and intraplate folding mechanisms. Neotectonic processes control landscape development and natural hazards, in particular the seismicity, during the late-stage (Late Neogene-Quaternary) evolution of both the Carpathians-Pannonian Basin system and its interaction with the adjacent Dinarides and Balkans. The deep structure of the SE Carpathians exerts a strong control on the post-collisional evolution of the system. New constraints are available from seismic tomography, deep seismic reflection and refraction profiling and detailed studies of the Vreancea seismicity. Inherited orogenic fabric and structure of the active Black Sea sink has a strong influence on the localisation of the Neogene sediment pathways. A close relationship has been established between the timing and mechanisms of stress changes in the Pannonian and Transylvania basins and structural episodes in the surrounding thrust belts, pointing to an intrinsic mechanical coupling with these basins, the orogen and its foredeep. Basin inversion taking place during the Pliocene-Quaternary times in the entire Carpathians-Pannonian system is related to changes in the regional stress field leading to differential vertical movements associated with a laterally variable folding mechanism active in the entire system. Short, crustal folding patterns alternate with lithospheric wavelengths in the SE Carpathians foreland, East and South Carpathians, Transylvania and Pannonian basins. The lateral variability is the result of a marked contrast in rheology between these areas, directly related to the crustal configuration, thermal properties and late-stage collision kinematics with the Carpathians foreland. Lateral variations in the properties of the downgoing plates largely control the collision mode in the Carpathians and the post-collisional evolution of the entire system. (c) 2005 Elsevier B.V All rights reserved.
机译:喀尔巴阡一潘诺尼盆地系统提供了一个自然实验室,用于分析源-汇耦合环境中岩石圈到地表构造构造地形的控制。为了将在深部和地面发生的过程联系起来,最近的研究集中在盆地演化,活动构造,地形演化和板内褶皱机制之间的相互作用。在喀尔巴阡—潘诺尼盆地系统的晚期(新近纪晚期—第四纪晚期)演化及其与相邻的第纳里德和巴尔干地区的相互作用中,新构造过程控制着景观的发展和自然灾害,尤其是地震活动。 SE喀尔巴阡山脉的深层结构对系统的碰撞后演化施加了强大的控制力。地震层析成像,深层地震反射和折射剖面以及Vreancea地震活动的详细研究提供了新的约束条件。活跃的黑海水槽的继承造山构造和结构对新近纪沉积物路径的定位有很大影响。在Pannonian和Transylvania盆地的应力变化的时间和机理与周围逆冲带的构造事件之间已经建立了密切的联系,表明与这些盆地,造山带及其前缘的内在机械耦合。整个喀尔巴阡-潘诺尼系统在上新世-第四纪发生的盆地倒转与区域应力场的变化有关,导致局部垂直运动的差异,而横向运动与整个系统中活动的横向折叠机制有关。在东南喀尔巴阡前陆,喀尔巴阡山脉的东部和南部,特兰西瓦尼亚和潘诺尼亚盆地,地壳的短短折叠模式与岩石圈波长交替出现。横向变化是这些区域之间流变性显着对比的结果,这直接与地壳构造,热学性质以及与喀尔巴阡前陆的后期碰撞运动学有关。下降板的性质的横向变化在很大程度上控制了喀尔巴阡山脉的碰撞模式以及整个系统的碰撞后演化。 (c)2005 Elsevier B.V保留所有权利。

著录项

相似文献

  • 外文文献
  • 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