Late Cenozoic fields of the tectonic stresses in Western and Central Mongolia

被引:0
|
作者
A. V. Parfeevets
V. A. San’kov
机构
[1] Russian Academy of Sciences,Institute of the Earth’s Crust, Siberian Branch
来源
关键词
Solid Earth; Strike Slip; Earth Quake; Baikal Rift Zone; Pull Apart Basin;
D O I
暂无
中图分类号
学科分类号
摘要
The paper addresses the Late Cenozoic fault tectonics and the stress state of the Earth’s crust within the Mongolian microplate, embracing Central and Western Mongolia. We analyze the results of reconstructing the stress fields and the tectonic deformations in the zones of active faulting, located at the uplands and in the intermountain trenches, which bound the microplate (Mongolian Altai; Gobi Altai; Dolinoozersk trough; Khan-Taishir-Nuruu, Khan-Houkhei, and Bolnai uplands) and the Khangai dome. Deformations related with the northeastern general-scale collisional compression are concentrated along the periphery of the Mongolian microplate, and the maximum compression is focused on its western and southern boundaries, thus forming the right- and the left-lateral transpressive structures of the Mongolian and Gobi Altai. The deformations associated with the shortening of the Earth’s crust involve not only the mountain ridges framing the block, but also the intermountain troughs that separate the Gobi and Mongolian Altai from the Khangai dome, and the southern portion of the Khangai Uplift. The diversity in the deformations within the central Khengai region ensues from the coupling of tension caused by the dynamical impact of the mantle anomaly, which is located east of 100°E, with a regional NE compression. Owing to the relatively rigid Khangai block, the deformations are transferred to the northern bound of this structure, namely the seismically active North Khangai fault. The role of compression increases to the west of the zone, where it conjugates with the transpressive structures of the Mongolian Altai. The tension becomes more important in the western part of this zone where the releasing bends are formed. A region characterized by extra tension is localized also to the east of 100° E. In terms of the gradient in the lithosphere thickness and the structure types of the upper crust, the submeridional line running along 100°E is interpreted as the key interblock boundary.
引用
收藏
页码:367 / 378
页数:11
相关论文
共 50 条
  • [31] Cenozoic tectonic evolution of the Poznan-Olesnica Fault Zone, central-western Poland
    Widera, Marek
    Cwiklinski, Wojciech
    Karman, Robert
    ACTA GEOLOGICA POLONICA, 2008, 58 (04) : 455 - 471
  • [32] Late Cenozoic magnetostratigraphy of the Yuncheng Basin, central North China Craton and its tectonic implications
    Yan, Jiyuan
    Hu, Jianmin
    Gong, Wangbin
    Liu, Xiaobo
    Yin, Yanguang
    Tan, Cheng
    GEOLOGICAL JOURNAL, 2020, 55 (11) : 7415 - 7428
  • [33] Late Cenozoic structural and tectonic development of the western margin of the central Andean Plateau in southwest Peru (vol 28, TC4007, 2009)
    Schildgen, Taylor F.
    Hodges, Kip V.
    Whipple, Kelin X.
    Pringle, Malcolm S.
    van Soest, Matthijs
    Cornell, Katrina
    TECTONICS, 2009, 28
  • [34] LATE CENOZOIC FAULTING IN WESTERN MONTANA
    PARDEE, JT
    GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 1947, 58 (12) : 1215 - 1215
  • [35] The upper mantle structure and Cenozoic volcanism in Central Mongolia
    N. A. Bushenkova
    E. V. Deev
    G. S. Dyagilev
    A. A. Gibsher
    Doklady Earth Sciences, 2008, 418 : 128 - 131
  • [36] Late Mesozoic - Early Cenozoic tectonic events in Daqingshan and Panyangshan, Inner Mongolia, and its implication for the tectonic evolution of the northern margin of the North China Craton
    Zhang J.
    Zheng J.
    Wang H.
    Guo L.
    Liu J.
    Qi G.
    Earth Science Frontiers, 2024, 31 (01) : 127 - 141
  • [37] The upper mantle structure and cenozoic volcanism in central Mongolia
    Bushenkova, N. A.
    Deev, E. V.
    Dyagilev, G. S.
    Gibsher, A. A.
    DOKLADY EARTH SCIENCES, 2008, 418 (01) : 128 - 131
  • [38] Sources and geodynamics of the Late Cenozoic volcanism of Central Mongolia: Evidence from isotope-geochemical studies
    Savatenkov, V. M.
    Yarmolyuk, V. V.
    Kudryashova, E. A.
    Kozlovskii, A. M.
    PETROLOGY, 2010, 18 (03) : 278 - 307
  • [39] Sources and geodynamics of the Late Cenozoic volcanism of Central Mongolia: Evidence from isotope-geochemical studies
    V. M. Savatenkov
    V. V. Yarmolyuk
    E. A. Kudryashova
    A. M. Kozlovskii
    Petrology, 2010, 18 : 278 - 307
  • [40] Reconstruction of Tectonic Stresses in Central Sakhalin
    Kamenev, P. A.
    Marinin, A. V.
    Degtyarev, V. A.
    Lukmanov, A. R.
    RUSSIAN JOURNAL OF PACIFIC GEOLOGY, 2023, 17 (SUPPL 2) : S154 - S165