В. А. Конторович, Б. В. Лунёв, Владимир Валентинович Лапковский
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引用次数: 0

摘要

本文讨论了拉普捷夫海岸Anabar - Khatanga鞍区的地质构造、含油气能力和含盐构造作用。研究区台地沉积物以14 ~ 45 km厚的新元古代—中生代沉积复合体为代表。区域剖面显示早、中泥盆世的含盐地层及其伴生的盐丘,可能指示了潜在的含烃构造。到达地表的底辟岩可能与能够捕获碳氢化合物的构造有关,典型的背斜构造可能发生在埋在沉积物下面的圆顶上方。在我们的研究中,我们使用了A.A. Trofimuk石油地质与地球物理研究所(IPGG SB RAS)开发的算法和软件包。结合研究区构造地质特征,对盐丘构造的形成进行了数值模拟。数值模拟表明,到达地表的对比穹丘在早二叠世开始形成,中生代发育最为强烈,隐伏底辟主要在晚白垩世和新生代发育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ГЕОЛОГО-ГЕОФИЗИЧЕСКАЯ ХАРАКТЕРИСТИКА ЗОЛОТОГО ОРУДЕНЕНИЯ ЖУРБА ЛЕВОГЕРБИНСКОГО РУДНОГО УЗЛА
The article discusses the geological structure, oil‐and‐gas‐bearing capacities and salt tectogenesis of the Anabar‐Khatanga saddle located on the Laptev Sea shore. In the study area, the platform sediments are represented by the 14‐45 km thick Neoproterozoic‐Mesozoic sedimentary complexes. The regional cross‐sections show the early and middle Devonian salt‐bearing strata and associated salt domes in the sedimentary cover, which may be indicative of potential hydrocarbon‐containing structures. Diapirs reaching the ground surface can be associated with structures capable of trapping hydrocarbons, and typical anticline structures can occur above the domes buried beneath the sediments. In our study, we used the algorithms and software packages developed by A.A. Trofimuk Institute of Petroleum Geology and Geophysics (IPGG SB RAS). Taking into account the structural geological features of the study area, we conducted numerical simulation of the formation of salt dome structures. According to the numerical models, contrasting domes that reached the ground surface began to form in the early Permian and developed most intensely in the Mesozoic, and the buried diapirs developed mainly in the late Cretaceous and Cenozoic.
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