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Structure of the North Kara Shelf from Results of Seismostratigraphic Analysis

机译:从地震地层分析结果看北克拉架的结构

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摘要

The sedimentary cover section of the North Kara Shelf had been subdivided based on extensive seismic data, and seismic correlation was carried out. The predominant role of Upper Riphean-Middle Paleozoic rocks has been corroborated. A series of relatively deepwater basins filled with primarily terrigenous fly-schoid rocks up to 7-9 km in thickness existed in the Late Riphean-Vendian at the place of the shelf. In the Cambrian, isolated basins merged into a wide and shallow-water basin as a result of the Baikalian reactivation in southeast Severnaya Zemlya and probably in Taimyr. After the pre-Ordovician hiatus, a vast sedimentation basin with a regressive section was formed on the shelf from Ordovician to Late Devonian. Shallow-water marine and near-shore carbonate and carbonate-terrigenous sequences accumulated in this basin and gave way to continental and less frequent near-shore, marine, variegated, and red beds in the Devonian. The thickness of the Ordovician-Devonian sequence reaches 6 km. Since the Mid-Carboniferous, block emergence and deep erosion of Ordovician-Devonian complexes have occurred in the north Kara shelf as a result of Hercynian events in northern Taimyr, Severnaya Zemlya, and in the southern Kara Sea. No Permian-Trias-sic rifts existed on the North Kara Shelf. At that time, the shelf was an area of erosion. The thickness of the Middle Carboniferous-Cretaceous sequence was insignificant and gradually increased toward Barents Sea troughs. The newly formed Svyataya Anna and Voronin troughs arose due to opening of the Eurasia Basin of the Arctic Ocean. The terrane concept has been subjected to criticism. The available data show that a large epi-Grenvillian continental block existed, and the North Kara region was part of it. Collision of the northern continent with the Paleosiberian Platform in the Late Paleozoic resulted in the formation of the Hercynian fold arc to the south of the North Kara Shelf, and an inverted orogenic arch arose at the place of shelf basin. The individual geological features that distinguish the North Kara Shelf from the Barents Sea troughs and the South Kara Syneclise are emphasized. The ancient pre-Riphean basement, a system of Late Riphean-Ven-dian relatively deepwater troughs and basins, Hercynian tectonic inversion, deep erosion of the most uplifted part of the arch, and significant block motions are the distinguishing features of the North Kara Shelf.
机译:根据广泛的地震数据对北卡拉架的沉积盖层进行了细分,并进行了地震相关性分析。上里菲安-中古生代岩石的主要作用已得到证实。里菲-文登后期的陆架处有一系列相对较深的盆地,主要由陆生的类飞石岩石填充,厚度达7-9 km。在寒武纪,由于东南Severnaya Zemlya和Taimyr的Baikalian复活,孤立的盆地合并成一个宽浅水盆地。在奥陶纪前的裂隙之后,从奥陶纪到晚泥盆世的陆架上形成了一个大面积的沉积盆地,具有一个退缩的剖面。浅水海相和近岸碳酸盐岩和碳酸盐岩陆源层序堆积在该盆地中,并被泥盆纪的陆相和频率较低的近海,海洋,杂色和红色层所取代。奥陶纪-德文系层序的厚度达到6 km。自中石炭纪以来,由于北泰米尔,Severnaya Zemlya和南部卡拉海发生的海西事件,在北部卡拉架上出现了奥陶纪-德文尼亚复合体的块状出现和深层侵蚀。北卡拉架上不存在二叠系-三叠系裂谷。当时,架子是一个受侵蚀的区域。中石炭纪-白垩纪层序的厚度微不足道,并向巴伦支海槽逐渐增加。由于北冰洋欧亚大陆盆地的开放,新成立的Svyataya Anna和Voronin槽出现了。地球概念受到了批评。现有数据表明,存在一个较大的外格林纳韦大陆块,而北卡拉地区就是其中的一部分。北部大陆与古生代末期的古西伯利亚台地碰撞导致北海卡拉架南部形成海西褶皱弧,并在陆架盆地位置形成了造山带倒转。强调了区分北卡拉架与巴伦支海海槽和南卡拉Syneclise的独特地质特征。古老的里弗纪前地下室,里弗纪-文甸后期相对较深的水槽和盆地,海西构造反转,拱顶最隆起的部分的深层侵蚀以及明显的块运动是北卡拉架的显着特征。 。

著录项

  • 来源
    《Geotectonics》 |2014年第2期|139-150|共12页
  • 作者单位

    Karpinsky All- Russia Geological Research Institute, Srednii pr. 74, St. Petersburg, 199106 Russia;

    Karpinsky All- Russia Geological Research Institute, Srednii pr. 74, St. Petersburg, 199106 Russia;

    Gramberg All-Russia Scientific Research Institute for Geology and Mineral Resources of the World Ocean, Angliiskii pr. 1, St. Petersburg, 190121, Russia;

    Faculty of Geology, St. Petersburg State University, Universitetskaya nab. 7/9, St. Petersburg, 199034 Russia Received March 25, 2013;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    North Kara Shelf; sedimentary cover; seismostratigraphy; continental block;

    机译:北卡拉架子;沉积层地震地层学大陆块;
  • 入库时间 2022-08-18 03:39:24

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