The Present State of Art of Long Period Magnetotellurics in the Western Part of the Bohemian Massif

Václav Ceav, Josef Pex, O. Praus
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引用次数: 7

Abstract

Research into the complex geological structure of the Middle European Variscides in the western part of the Bohemian Massif has largely intensified in connection with the KTB deep borehole project in the Oberpfalz, Germany. First results of long period magnetotelluric studies along an about 100 km long profile in SW Bohemia, close to the KTB drilling site, are presented here. They represent a partial step within a broader project of constructing a 3-D geoelectrical model of the western margin of the Bohemian Massif and resolving the relations of anomalous geoelectrical features to the geological structures of the region. The data roughly fit a composite model of a 2-D regional structure, striking E-W, overlaid by a layer of highly distorting near-surface inhomogeneities. The distorting layer displays large anisotropy with preferred conductivity in NW-SE to NNW-SSE direction. Attempt is made to estimate the absolute static shift of the MT curves. Several variants of 2-D models for the deep regional structure are discussed, including an anisotropic model which can qualitatively explain the discrepancy of the principal directions indicated by the MT and GDS data. The relation of the results obtained along the particular profile to the regional geoelectrical background is studied.
波西米亚地块西部长周期大地电磁学研究现状
在德国Oberpfalz的KTB深钻孔项目中,对波希米亚地块西部中欧varisides复杂地质结构的研究在很大程度上加强了。在靠近KTB钻井地点的波西米亚西南部,沿着约100公里长的剖面进行的长期大地电磁研究的第一批结果在此展示。它们代表了构建波西米亚地块西缘三维地电模型和解决该地区异常地电特征与地质结构关系的更广泛项目的一部分。这些数据大致符合二维区域结构的复合模型,呈现东西向,上面覆盖着一层高度扭曲的近地表不均匀性。扭曲层表现出较大的各向异性,电导率在NW-SE ~ NNW-SSE方向优先。试图估计MT曲线的绝对静态位移。讨论了深部构造二维模型的几种变体,其中包括一个各向异性模型,该模型可以定性地解释MT和GDS数据所指示的主方向的差异。研究了沿特定剖面所得结果与区域地电背景的关系。
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