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Underground Vertical Seismic Profiling with Conventional and Fiber-Optic Systems for Exploration in the Kylylahti Polymetallic Mine, Eastern Finland

机译:芬兰东部Kylylahti多金属矿井的地下垂直地震剖面分析,采用常规和光纤系统进行勘探

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Seismic reflection methods have been used for the exploration of mineral resources for several decades. However, despite their unmatched spatial resolution and depth penetration, they only have played a minor role in mineral discoveries so far. Instead, mining and exploration companies have traditionally focused more on the use of potential field, electric and electromagnetic methods. In this context, we present a case study of an underground Vertical Seismic Profiling (VSP) experiment, which was designed to image a (semi-)massive sulfide deposit located in the Kylylahti polymetallic mine in eastern Finland. For the measurement, we used a conventional VSP with three-component geophones and a novel fiber-optic Distributed Acoustic Sensing (DAS) system. Both systems were deployed in boreholes located nearby the target sulfide deposit, and used in combination with an active seismic source that was fired from within the underground tunnels. With this setup, we successfully recorded seismic reflections from the deposit and its nearby geological contrasts. The recording systems provided data with a good signal-to-noise ratio and high spatial resolution. In addition to the measurements, we generated a realistic synthetic dataset based on a detailed geological model derived from extensive drilling data and petrophysical laboratory analysis. Specific processing and imaging of the acquired and synthetic datasets yielded high-resolution reflectivity images. Joint analysis of these images and cross-validation with lithological logging data from 135 nearby boreholes led to successful interpretation of key geological contacts including the target sulfide mineralization. In conclusion, our experiment demonstrates the value of in-mine VSP measurements for detailed resource delineation in a complex geological setting. In particular, we emphasize the potential benefit of using fiber-optic DAS systems, which provide reflection data at sufficient quality with less logistical effort and a higher acquisition rate. This amounts to a lower total acquisition cost, which makes DAS a valuable tool for future mineral exploration activities.
机译:地震反射方法已用于勘探矿产资源已有数十年的历史。但是,尽管它们具有无与伦比的空间分辨率和深度穿透力,但到目前为止,它们在矿物发现中仅扮演了次要角色。取而代之的是,采矿和勘探公司传统上将重点更多地放在势场,电和电磁方法的使用上。在这种情况下,我们提供了一个地下垂直地震剖面(VSP)实验的案例研究,该实验旨在对位于芬兰东部Kylylahti多金属矿山中的(半)大量硫化物矿床进行成像。对于测量,我们使用了带有三分量检波器的常规VSP和新型光纤分布式声学传感(DAS)系统。两种系统均部署在目标硫化物矿床附近的钻孔中,并与从地下隧道内发射的主动地震源结合使用。通过这种设置,我们成功地记录了该矿床及其附近地质对比的地震反射。记录系统为数据提供了良好的信噪比和高空间分辨率。除了进行测量外,我们还根据详细的地质模型(从大量的钻井数据和岩石物理实验室分析中得出)生成了一个现实的合成数据集。对采集的数据集和合成的数据集进行特定的处理和成像可以得到高分辨率的反射率图像。对这些图像进行联合分析,并与来自135个附近钻孔的岩性测井数据进行交叉验证,从而成功解释了包括目标硫化物矿化在内的关键地质接触。总之,我们的实验证明了矿井VSP测量对于复杂地质环境中详细资源描述的价值。特别是,我们强调使用光纤DAS系统的潜在好处,该系统以较低的后勤工作量和较高的采集速率提供足够质量的反射数据。这降低了总购置成本,使DAS成为了未来矿产勘探活动的宝贵工具。

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