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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >3D constraints and finite-difference modeling of massive sulfide deposits: The Kristineberg seismic lines revisited, northern Sweden
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3D constraints and finite-difference modeling of massive sulfide deposits: The Kristineberg seismic lines revisited, northern Sweden

机译:大块硫化物矿床的3D约束和有限差分模型:瑞典北部的克里斯汀堡地震线

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The Kristineberg mining area in the western part of the Skellefte ore district is the largest base metal producer in northern Sweden and currently the subject of extensive geophysical and geologic studies aimed at constructing 3D geologic models. Seismic reflection data form the backbone of the geologic modeling in the study area. A geologic cross section close to the Kristineberg mine was used to generate synthetic seismic data using acoustic and elastic finite-difference algorithms to provide further insight about the nature of reflections and processing challenges when attempting to image the steeply dipping structures within the study area. Synthetic data suggest processing artifacts manifested themselves in the final 2D images as steeply dipping events that could be confused with reflections. Fewer artifacts are observed when the data are processed using prestack time migration. Prestack time migration also was performed on high-resolution seismic data recently collected near the Kristineberg mine and helped to image a high-amplitude, gently dipping reflection occurring stratigraphically above the extension of the deepest Kristineberg deposit. Swath 3D processing was applied to two crossing seismic lines, west of the Kristineberg mine, to provide information on the 3D geometry of an apparently flat-lying reflection observed in both of the profiles. The processing indicated that the reflection dips about 30° to the southwest and is generated at the contact between metasedimentary and metavolcanic rocks, the upper part of the latter unit being the most typical stratigraphic level for the massive sulfide deposits in the Skellefte district.
机译:Skellefte矿区西部的Kristineberg矿区是瑞典北部最大的贱金属生产商,目前是旨在构建3D地质模型的广泛地球物理和地质研究的主题。地震反射数据构成了研究区域地质建模的基础。在试图对研究区域内陡倾结构进行成像时,使用了靠近克里斯汀伯格矿山的地质剖面,通过声学和弹性有限差分算法生成合成地震数据,以提供有关反射性质和处理挑战的更多信息。合成数据表明,处理的伪像在最终的2D图像中表现为陡峭的下降事件,可能与反射相混淆。使用叠前时间迁移处理数据时,观察到的工件更少。叠前时间偏移也根据最近在克里斯汀堡矿山附近采集的高分辨率地震数据进行,并有助于成像高振幅的地层,在地层上最深的克里斯汀堡矿床的延伸范围内轻轻地反射反射。在Kristineberg矿以西的两条相交地震线上应用了条带3D处理,以提供有关在两个剖面中观察到的明显平坦的反射的3D几何形状的信息。处理过程表明,反射向西南倾斜约30°,是在准沉积岩和准火山岩之间的接触处产生的,后者的上部是Skellefte地区块状硫化物矿床最典型的地层。

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