Three-dimensional geoelectrical model of the central part of the Zvizdal-Zaliska and Brusyliv fault zones of the Ukrainian Shield

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS
T. Burakhovych, V. Ilienko, A. Kushnir
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引用次数: 1

Abstract

To study the deep structure of the geoelectrically complex junction zone of three megablocks of the western part of the Ukrainian Shield (Volyn', Podil, and Ros'), a three-dimensional model of the central part of the Zvizdal-Zaliska and Brusyliv fault zones was created. It is based on modern experimental observations of the Earth's natural low-frequency electromagnetic field in a wide range of periods. Synchronous experimental data of deep magnetotelluric sounding and magnetovariational profiling, obtained by the Institutes of the National Academy of Sciences of Ukraine in 2009—2019, were analyzed. The main issues of the geoelectrical modeling methodology using the Mtd3fwd software complex were considered, such as model elements, stages, alternative models, examples of calculations and comparison of observations, errors, etc. The constructed model analysis showed that of the large number of near-surface anomalies with low resistivity (5 to 100 Ohm · m), most sink to 500 m and only a few reach a depth of 1 km and are followed up to 11 km. It was established that there are connections between conductivity and structural features of the Zvizdal-Zaliska, Brusyliv, Nemyriv fault zones, the Samgorod fault and the Kocheriv synclinorium. Most of the isolated conductors appear in a mosaic pattern along the extended fault zones and form interspersed chains of high and low resistivity. Regional anomalies were confirmed and detailed both in the deep part of the crust and in the upper mantle; part of the Zvizdal-Zaliska fault zone appeared at depths of 15—30 km as a contact zone of abnormally high and low resistivities. Anomalies are confined to elongated zones of metasomatization and graphitized rock areas, some of the surface anomalies correspond to areas of the weathering crust. Most of the anomalies coincide with ore occurrences, ore-bearing fields and mineral deposits. The conducted geological-geoelectrical analysis of the model made it possible for the first time to identify two promising areas for further study that meet the geoelectrical criteria for the mineral search: along the Zvizdal-Zaliska fault zone between the Samgorod and Unava faults; along the Samgorod fault in the area of its intersection with the Kocheriv and Taboriv faults.
乌克兰地盾Zvizdal-Zaliska和Brusyliv断层带中部的三维地电模型
为了研究乌克兰地盾西部三个巨型区块(Volyn’、Podil和Ros’)地电复杂连接带的深层结构,建立了Zvizdal-Zaliska和Brusyliv断层带中部的三维模型。它基于对地球自然低频电磁场在大范围内的现代实验观测。分析了乌克兰国家科学院研究院2009-2019年获得的深大地电磁测深和变分磁剖面的同步实验数据。考虑了使用Mtd3fwd软件复合体的地电建模方法的主要问题,如模型元素、阶段、替代模型、计算示例以及观测值的比较、误差等。构建的模型分析表明,在大量低电阻率(5至100欧姆·米)的近地表异常中,大多数下沉到500米,只有少数达到1公里的深度,然后延伸到11公里。已经确定Zvizdal-Zaliska、Brusyliv、Nemyriv断层带、Samgorod断层和Kocheriv向斜的导电性和结构特征之间存在联系。大多数隔离导体沿着延伸的断层带呈马赛克图案,并形成高电阻率和低电阻率的穿插链。在地壳深部和上地幔都确认并详细说明了区域异常;Zvizdal-Zaliska断层带的一部分出现在15-30km深处,是电阻率异常高和异常低的接触带。异常仅限于交代作用和石墨化岩石区域的细长区域,一些表面异常与风化壳区域相对应。大多数异常与矿点、含矿区和矿床相吻合。对该模型进行的地质地电分析首次确定了两个有希望进行进一步研究的区域,这两个区域符合矿物搜索的地电标准:沿桑戈罗德断层和乌纳瓦断层之间的Zvizdal-Zaliska断层带;沿着Samgorod断层与Kocheriv和Taboriv断层相交的区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
自引率
60.00%
发文量
50
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