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Recent stress field in the east of the Russian Plate and the Urals from macro- and mesostructural evidence

机译:宏观和细观结构证据表明,俄罗斯板块和乌拉尔东部最近的应力场

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This paper presents the first cartographic reconstruction of the recent stress field for the southeastern Russian Plate and the southern Urals based on computer analysis of the extensive body of measurements of mesostructural kinematic markers. Comparison of this reconstruction with macro- and mesostructural data on the dynamics of recent dislocations at the platform leads to the following conclusions: (1) spatial variations of the stress field reflect the pressure on the platform's lithosphere from the Caucasus-Kopet Dagh collisional orogen and the intraplate linear rise of the recent Urals, presumably related to the Central Asian collision zone; (2) when passing through the heterogeneous crust of the platform, the collision stresses were distorted: in the vertical section, compression decreased upward (especially in strike-slip-stress regime) and even gave way to extension above uplifting hanging wall of thrust faults and crests of swells; in plan view, compression (including in the strike-slip-stress regime) increased at basement uplifts; on the contrary, extension increased near syneclises, as well as lateral squeezing directed here along strike-slip faults; (3) reconstructions based on data variable in scale and type (results of macro- and mesostructural observations processed by differing statistical means with leading use of computer programs) do not contradict but supplement one another. Taken together, they represent the complete pattern of the recent stress state; (4) our results can be used for applied purposes to introduce clarity into the kinematics of the known faults, especially for revealing strike-slip offsets and how the intraplate earthquakes relate to faults and flexures of a certain kinematics. In general, they indicate that tectonodynamic analysis is promising for solving regional tectonic problems.
机译:本文基于计算机对细观结构运动学标记物大量测量的计算机分析,介绍了俄罗斯东南部板块和乌拉尔南部最近应力场的首次制图重建。将此重建与平台​​上最近位错动力学的宏观和细观结构数据进行比较,得出以下结论:(1)应力场的空间变化反映了高加索-科佩特·达格碰撞造山带对平台岩石圈的压力。最近的乌拉尔板块内线性上升,大概与中亚碰撞带有关; (2)穿过平台的非均质地壳时,碰撞应力发生了畸变:在垂直剖面上,压力向上减小(特别是在走滑应力状态下),甚至在伸展断层的抬升悬挂壁上方扩展。浪峰;在平面图中,地下隆起处的压缩(包括在走滑应力作用下)增加;相反,延伸靠近突触线,以及沿走滑断层的横向挤压。 (3)基于规模和类型变量的数据的重建(通过使用计算机程序领先使用不同的统计手段处理宏观和细观结构的结果)并不矛盾,而是相互补充的。总之,它们代表了近期压力状态的完整模式。 (4)我们的结果可用于应用目的,以将已知断层的运动学引入清晰度,特别是用于揭示走滑偏移量以及板内地震如何与某些运动学的断层和挠曲相关。总体而言,它们表明构造动力学分析有望解决区域构造问题。

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