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首页> 外文期刊>Geophysical Prospecting >Building a 3D model of lithological contacts and near-mine structures in the Kevitsa mining and exploration site, Northern Finland: constraints from 2D and 3D reflection seismic data
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Building a 3D model of lithological contacts and near-mine structures in the Kevitsa mining and exploration site, Northern Finland: constraints from 2D and 3D reflection seismic data

机译:在芬兰北部的Kevitsa采矿和勘探现场建立岩性接触和近矿结构的3D模型:2D和3D反射地震数据的约束

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摘要

The Kevitsa mafic-ultramafic intrusion in Northern Finland hosts a large, disseminated nickel-copper sulphide ore body. The Kevitsa intrusion is an active mining and exploration site, for which we have built a 3D model of the main lithological contacts and near-mine structures in the area. To build the 3D model, 2D and 3D reflection seismic data have been used together with borehole data and geological map of the area. The Kevitsa reflection seismic data reveal the internal architecture of the Kevitsa intrusion and the surrounding units. For example, the seismic data have uncovered a previously unknown, deeper continuation of the Kevitsa intrusion. Improved 3D knowledge of the basal contact of the intrusion provides an exploration target for contact-type mineralization. Within the intrusion, a limited area of strong reflections is observed in the data. This has been associated with discontinuous, smaller-scale magmatic layering that is thought to control the extent of the Kevitsa main mineralization. Thus, our 3D model of the extents of the internal reflectors can provide a framework for near-mine and deep exploration of the main type of mineralization in the area. In addition to exploration, the original purpose of the 3D seismic survey was geotechnical planning of the Kevitsa open-pit mine. Accordingly, the 3D seismic data were used to create a 3D model of the subsurface structures, with a focus on the vicinity of the mine. The interpreted structures reveal a complex pattern of fault and fracture zones, some of which will be important for slope stability and operational planning of the final stages of the mine.
机译:芬兰北部的Kevitsa镁铁质-超镁铁质侵入体拥有一个散布着的大型镍-铜-硫化物矿体。 Kevitsa入侵是一个活跃的采矿和勘探场所,为此我们建立了该地区主要岩性接触面和近矿结构的3D模型。为了建立3D模型,已将2D和3D反射地震数据与该地区的钻孔数据和地质图一起使用。 Kevitsa反射地震数据揭示了Kevitsa侵入体和周围单元的内部结构。例如,地震数据揭示了Kevitsa入侵的先前未知,更深的延续。侵入体基础接触的改进3D知识为接触型矿化提供了勘探目标。在入侵范围内,在数据中观察到有限区域的强反射。这与不连续的小规模岩浆分层有关,据认为该分层控制了Kevitsa主要矿化的程度。因此,我们的内部反射器范围的3D模型可以为该地区主要矿化类型的近矿和深层勘探提供框架。除了勘探外,3D地震勘测的原始目的是对Kevitsa露天矿的岩土工程计划。因此,将3D地震数据用于创建地下结构的3D模型,重点放在矿山附近。解释后的结构显示出复杂的断层和断裂带模式,其中一些对于矿山最后阶段的边坡稳定性和运营规划很重要。

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