顿河中流区(新沃罗涅日核电站区域)的新构造构造与现代地球动力学

V. Makeev, E. A. Pikulik, A. S. Guseltsev
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引用次数: 0

摘要

背景。在顿河中流地区进行了构造和地球动力学研究。识别和评估新构造构造,确定其形成的地球动力学条件,并分析与确保位于该地区的新沃罗涅日核电站(NPP)安全相关的密集外源地质过程,该核电站是东欧平台中部最大的核电站。材料和方法。根据深部地球动力系统的概念,对区内的岩性、构造地貌和新构造条件进行了研究。实地观察和以地质调查数据为基础的出版物是研究的事实材料。确定了不同类型的隆升槽、地球动力学活动区和地貌。构造的形成与深部(皮质内)压缩和拉应力有关,在这些应力的影响下,对核电站区域不利的构造-重力和岩溶作用被激活。在结晶基底的古前寒武纪断裂中,南向的Sudzhen-Ikorets断裂和俯冲的Semiluki-Lipetsky断裂较为活跃。后者被认为是地球动力学活跃带。在核电站遗址及其附近,发现了裂缝增大和渗透性增大的区域,这与顿河及其支流古地貌的埋藏形式相一致。这些带被发现深嵌于白垩系和泥盆系碳酸盐岩中,这是这些岩石浸出增加和从河流冰川地层中去除细颗粒的原因。对新构造运动的总合和分步振幅和速度进行了定量评价。新沃罗涅日核电站的领土是地球动力学平静的,移动速度(计算和根据仪器测量)相对较低;然而,这些运动激活了外源性过程,这反过来又对Novovoronezh NPP位点的稳定性产生了负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neotectonic structures and modern geodynamics of the middle flow region of the Don river (the territory of the Novovoronezh nuclear power plant)
Background. Structural and geodynamic studies are conducted in the region of the middle flow of the Don river.Aim. An identification and evaluation of neotectonic structures, determination of geodynamic conditions for their formation and an analysis of intensive exogenous geological processes in connection with the need to ensure the safety of the Novovoronezh nuclear power plant (NPP) located in this area, the largest in the central part of the Eastern European platform.Materials and methods. According to the concept of deep geodynamic systems, the lithological, structural-geomorphological and neotectonic conditions of the territory were studied. Field observations and publications based on geological survey data were the factual material for the studies.Results. Various types of uplifts and troughs, geodynamically active zones and lineaments were identified. The formation of structures is associated with deep (intracortical) stresses of compression and tension, under the influence of which the tectonic-gravity and suffosion-karst processes negative for the territory of the nuclear power plant are activated. Among the ancient Precambrian faults of the crystalline basement, the latitudinal Sudzhen-Ikorets and submeridional Semiluki-Lipetsky faults are active. The latter is considered as a geodynamically active zone. At the NPP site and in its vicinity, the zones of increased fracturing and permeability were identified, which is consistent with the buried forms of the relief — paleo-reliefs of the Don river and its tributaries. These zones are found to be deeply embedded in the Cretaceous and Devonian carbonate rocks, which is the reason for the increased leaching of these rocks and the removal of fine particles from the fluvioglacial strata. A quantitative assessment of summary and step-by-step amplitudes and speeds of neotectonic movements was carried out.Conclusion. The territory of the Novovoronezh NPP is geodynamically calm, the movement speeds (both calculated and according to instrumental measurements) are relatively low; however, these movements activate exogenous processes, which in turn negatively affect the stability of the Novovoronezh NPP site.
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