Neotectonic Evolution of the Caucasus: Recent Vertical Movements and Mechanism of Crustal Deformation

IF 0.9 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Izvestiya, Physics of the Solid Earth Pub Date : 2024-09-30 DOI:10.1134/S1069351324700630
V. N. Tatarinov, V. I. Kaftan, A. I. Manevich, B. A. Dzeboev, B. V. Dzeranov, A. M. Avdonina, I. V. Losev, A. A. Korolkova
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Abstract—It is generally recognized that the formation of the fold-and-thrust tectonic structures of mobile belts on continents is associated with crushing and narrowing of the Earth’s crust due to collision of lithospheric plates. The deformation of the Caucasian lithosphere in the recent time is generally consistent with these ideas. However, the block differentiation of the Caucasian lithosphere brings specificity into the directionality of recent vertical and horizontal movements. In this paper, we analyze vertical movements of the Caucasus estimated by means of high-precision leveling over a period of more than a century and consider their spatial correlation with the tectonics, seismicity, stress-strain state, and geophysical fields. A clear correlation indicating the deep tectonic nature of the long-term uplifts of the Caucasus crust is revealed. The differentiation of the Arabian plate movement causes partitioning of the Caucasus territory into provinces that differ by the pattern of recent movements, orientation of faults, and stress-strain state of the geomaterial. These provinces also have distinctions in seismicity in terms of the number of seismic events and focal mechanisms of the earthquakes. We propose a model of a deformation mechanism of the Greater Caucasus, which accommodates the long-term trend of the Caucasus uplift in the conditions of general shortening of the Earth’s crust. The results of the analysis provide a basis for discussion of a probable mechanism of neotectonic evolution of the Greater Caucasus, which can be used in the seismic hazard assessment of the North Caucasus.

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高加索地区的新构造演化:近期垂直运动和地壳变形机制
摘要--人们普遍认为,大陆移动带褶皱-推覆构造结构的形成与岩石圈板块碰撞导致的地壳挤压和缩窄有关。高加索岩石圈近期的变形与上述观点基本一致。然而,高加索岩石圈的块体分异给近期垂直和水平运动的方向性带来了特殊性。在本文中,我们分析了通过高精度水准测量估算的一个多世纪以来高加索地区的垂直运动,并考虑了其与构造、地震、应力应变状态和地球物理领域的空间相关性。结果表明,高加索地壳的长期隆起具有明显的深部构造性质。阿拉伯板块运动的分化导致高加索地区被划分为不同的省份,这些省份因近期运动模式、断层走向和地质材料的应力应变状态而有所不同。这些省份在地震事件的数量和震源机制方面也各不相同。我们提出了一个大高加索地区变形机制模型,该模型在地壳普遍缩短的条件下适应了高加索地区隆起的长期趋势。分析结果为讨论大高加索地区新构造演化的可能机制提供了基础,该机制可用于北高加索地区的地震灾害评估。
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来源期刊
Izvestiya, Physics of the Solid Earth
Izvestiya, Physics of the Solid Earth 地学-地球化学与地球物理
CiteScore
1.60
自引率
30.00%
发文量
60
审稿时长
6-12 weeks
期刊介绍: Izvestiya, Physics of the Solid Earth is an international peer reviewed journal that publishes results of original theoretical and experimental research in relevant areas of the physics of the Earth''s interior and applied geophysics. The journal welcomes manuscripts from all countries in the English or Russian language.
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