首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Reflection seismic investigations in the Dannemora area, central Sweden: Insights into the geometry of polyphase deformation zones and magnetite‐skarn deposits
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Reflection seismic investigations in the Dannemora area, central Sweden: Insights into the geometry of polyphase deformation zones and magnetite‐skarn deposits

机译:瑞典中部Dannemora地区的反射地震调查:洞察多相变形带和磁铁矿-矽卡岩矿床的几何形状

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摘要

The Bergslagen region is one of the most ore prospective districts in Sweden. Presented here are results from two nearly 25 km long reflection seismic profiles crossing this region in the Dannemora mining area. The interpretations are constrained by seismic wave velocity measurements on a series of rock samples, cross‐dip analysis, prestack time migration, and swath 3‐D imaging, as well as by other available geophysical and geological observations. A series of major fault zones is imaged by the seismic data, as is a large mafic intrusion. However, the most prominent feature is a package of east‐dipping reflectors found east of the Dannemora area that extend down to at least 3 km depth. This package is associated with a polyphase, ductile‐brittle deformation zone with the latest ductile movement showing east‐side‐up or reverse kinematics. Its total vertical displacement is estimated to be in the order of 2.5 km. Also clearly imaged in the seismic data is a steeply dipping reflector near the Dannemora mine that extends down to a depth of at least 2.2 km. The geological nature of this reflector is not known, but it could represent either a fluid‐bearing fault zone or a deep‐seated iron deposit, making it an important target for further detailed geophysical and geological investigations.
机译:伯格斯拉根地区是瑞典最具矿产资源的地区之一。这里展示的是在丹讷莫拉矿区穿越该地区的两个近25公里长的反射地震剖面的结果。这些解释受到一系列岩石样品的地震波速度测量,交叉倾角分析,叠前时间偏移和条幅3D成像以及其他可用的地球物理和地质观测的限制。一系列的主要断层带由地震数据成像,大型的镁铁质侵入体也是如此。但是,最显着的特征是在Dannemora地区以东发现的一整套向东倾斜的反射器,延伸到至少3 km的深度。该软件包与一个多相延性-脆性变形带有关,最新的延性运动显示了东侧向上或反向运动学。它的总垂直位移估计约为2.5 km。在地震数据中也清楚地显示了Dannemora矿附近的一个陡倾反射器,该反射器向下延伸到至少2.2 km的深度。该反射器的地质性质尚不清楚,但它可能代表含流体的断层带或深部的铁矿床,使其成为进一步详细的地球物理和地质调查的重要目标。

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