Imaging Mofette Structures in the Ohře Rift System, Czech Republic, Using Radio-Magnetotelluric Data

IF 1.9 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Paula Rulff, Ute Weckmann, Thomas Kalscheuer, Gregor Willkommen, Laura Maria Buntin, Anna Platz
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Abstract

The pathways of fluids and mantle-originated carbon dioxide in the seismically active Ohře (Eger) Rift system appearing as mofettes at the surface are currently subject to investigation, especially by the International Continental Scientific Drilling Program “Drilling the Eger Rift”. If the aquifers show significant contrast in electrical resistivity to the host rocks, they can be investigated with geo-electromagnetic methods. However, imaging complex fluid and CO2 pathways in detail in near-surface structures is challenging, because, in contrast to the background stratigraphy, they are often oriented in near-vertical directions. Therefore, we aim to investigate how the shallow aquifer structures can be examined best with an inductive electromagnetic method. For this purpose, we collected radio-magnetotelluric data in the Hartoušov mofette field and evaluated them by two- and three-dimensional inversions. Data from a nearby magnetotelluric station, drill hole data, gas flux measurements and electrical resistivity tomography models were used to assess the reliability and robustness of our inversion results. We concluded that the near-surface fluid reservoirs are adequately depictable, while the migration paths of gaseous CO2 cannot be traced properly due to a lack of resistivity contrast. Our model analyses suggest that imaging the given geological setting with fluids and gases ascending in anastomosing pathways benefits from a fine-scale three-dimensional inversion approach because the fluids mostly appear as local conductive reservoir-like anomalies, which can be falsely projected onto the profiles during inversion in two dimensions. The resistivity models contribute with detailed images of the near-surface aquifers to the geodynamic model of the Ohře Rift.

利用射电磁法数据成像捷克共和国奥热裂谷系统中的莫菲特结构
在地震活跃的Ohře (Eger)裂谷系统中,流体和地幔源二氧化碳的路径在地表以颗粒的形式出现,是目前研究的对象,特别是国际大陆科学钻探计划“钻探Eger裂谷”。如果含水层的电阻率与宿主岩石的电阻率有显著差异,则可以用地电磁方法对其进行研究。然而,在近地表构造中详细成像复杂的流体和二氧化碳路径是具有挑战性的,因为与背景地层学相比,它们通常面向近垂直方向。因此,我们的目的是研究如何用感应电磁法最好地检测浅层含水层结构。为此,我们收集了Hartoušov mofette场的无线电大地电磁数据,并通过二维和三维反演对其进行了评估。利用附近大地电磁站的数据、钻孔数据、气体通量测量和电阻率层析成像模型来评估反演结果的可靠性和鲁棒性。我们的结论是,近地表流体储层可以被充分描述,而由于缺乏电阻率对比,气态CO2的运移路径无法被正确追踪。我们的模型分析表明,对流体和气体在吻合路径上上升的给定地质环境进行成像,得益于精细尺度的三维反演方法,因为流体大多表现为局部导电的类储层异常,这些异常可能在二维反演过程中被错误地投影到剖面上。电阻率模型为Ohře裂谷的地球动力学模型提供了近地表含水层的详细图像。
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来源期刊
pure and applied geophysics
pure and applied geophysics 地学-地球化学与地球物理
CiteScore
4.20
自引率
5.00%
发文量
240
审稿时长
9.8 months
期刊介绍: pure and applied geophysics (pageoph), a continuation of the journal "Geofisica pura e applicata", publishes original scientific contributions in the fields of solid Earth, atmospheric and oceanic sciences. Regular and special issues feature thought-provoking reports on active areas of current research and state-of-the-art surveys. Long running journal, founded in 1939 as Geofisica pura e applicata Publishes peer-reviewed original scientific contributions and state-of-the-art surveys in solid earth and atmospheric sciences Features thought-provoking reports on active areas of current research and is a major source for publications on tsunami research Coverage extends to research topics in oceanic sciences See Instructions for Authors on the right hand side.
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