克里米亚草原腹地三维地电模型的解释。尤帕托利亚和saki简介

T. Burakhovich, A. Kushnir, V. Ilienko
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引用次数: 1

摘要

Saki和Yevpatoria剖面内的克里米亚地区深层三维地电模型段的解释是基于地球低频电磁场实验观测,由以s.i.s ubotin命名的地球物理研究所于2012年获得的。分析的主要结果是确定了地壳和上地幔中高低电阻率的垂直和水平交替。结果表明:该模型所有剖面的地电剖面均表现为固结基底地表深度向北倾斜,近地表电导率随之增大。胶结地壳电导率异常在深度5 ~ 10 km,电阻率(ρ)为5 Ohmꞏm,与沉积盖层电偶联。深度大于10 km, ρ均质层和非均质层交替分布:10-60 km, ρ = 1000 Ohmꞏm;60-90 km ρ = 100和1000欧姆ꞏm;90-110 km ρ = 1000欧姆ꞏm;110 ~ 140 km, ρ = 40和1000 Ohmꞏm,接触对应于斯基泰板块和东欧地台不同年龄构造正电剖面的不同ρ值;也是水平分层的正常切片。分析了克里米亚草原震区的震源集中在地电不均匀带,并倾向于接触ρ值不同的构造——在地壳固结岩石的上缘之上、外部和电导率异常之间。根据地球电磁测深和三维模拟资料,确定了以亚垂直通道与沉积层电连接、地壳和上地幔分层为特征的高电导率异常是油气表现的主要制约因素。地电不均匀性反映了地壳和上地幔的现状,可能是受现代地幔流体的影响,与地震活动性和碳氢化合物含量的表现相对应。
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INTERPRETATION OF THE 3D GEOELECTRICAL MODEL OF THE STEPPE CRIMEA BOWELS. EUPATORIA AND SAKI PROFILES
The interpretation of the segment of the deep three-dimensional Crimean region geoelectrical model within the Saki and Yevpatoria profiles, built on the basis of the Earth's low-frequency electromagnetic field experimental observations, was obtained in 2012 by the INSTITUTE OF GEOPHYSICS named after S.I.Subbotin. The main result of the analysis is the identification of vertical and horizontal alternation of high and low resistivity, both in the earth's crust and in the upper mantle. It is shown that the geoelectrical sections along all the profile sections of the model are characterized by a dip to the north of the consolidated basement surface depth and, accordingly, an increase of the near-surface layer conductivity. The conductivity anomaly in the consolidated earth's crust was revealed in the depth interval of 5-10 km with resistivity (ρ) of 5 Ohmꞏm, galvanically connected with the sedimentary cover. Deeper than 10 km, homogeneous and inhomogeneous layers in ρ alternate: 10-60 km with ρ = 1000 Ohmꞏm; 60-90 km with ρ = 100 and 1000 Ohmꞏm; 90-110 km with ρ = 1000 Ohmꞏm; 110-140 km with ρ = 40 and 1000 Ohmꞏm, the contact corresponds to the different ρ of normal geoelectrical sections of different-aged structures of the Scythian plate and the East European platform; also horizontally layered normal section. It has been analyzed that earthquake sources of the Steppe Crimea seismic region are concentrated in geoelectrically inhomogeneous zones and tend to contact structures with ρ differ - above the upper margin, outside and between the conductivity anomalies in the consolidated rocks of the earth's crust. The considered material confidently indicates the confinement of hydrocarbon manifestations to the high electrical conductivity anomalies identified according to the data of geoelectromagnetical sounding and three-dimensional modeling, which are characterized by subvertical channels galvanically connected with sedimentary deposits, and layering in the earth's crust and upper mantle. Geoelectrical inhomogeneities, which reflect the current state of the earth's crust and upper mantle and are probably due to the influence of modern mantle fluids, correspond to manifestations of seismicity and hydrocarbon content.
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