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Utilization of Integrated Geophysical Techniques to Delineate the Extraction of Mining Bench of Ornamental Rocks (Marble)

机译:利用综合地球物理技术描绘装饰性岩石(大理石)的开采台面

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Low yields in ornamental rock mining remain one of the most important problems in this industry. This fact is usually associated with the presence of anisotropies in the rock, which makes it difficult to extract the blocks. An optimised planning of the exploitation, together with an improved geological understanding of the deposit, could increase these yields. In this work, marble mining in Macael (Spain) was studied to test the capacity of non-destructive geophysical prospecting methods (GPR and ERI) as tools to characterize the geology of the deposit. It is well-known that the ERI method provides a greater penetration depth. By using this technique, it is possible to distinguish the boundaries between the marble and the underlying micaschists, the morphology of the unit to be exploited, and even fracture zones to be identified. Therefore, this technique could be used in the early stages of research, to estimate the reserves of the deposit. The GPR methodology, with a lower penetration depth, is able to offer more detailed information. Specifically, it detects lateral and vertical changes of the facies inside the marble unit, as well as the anisotropies of the rock (fractures or holes). This technique would be suitable for use in a second stage of research. On the one hand, it is very useful for characterization of the texture and fabric of the rock, which allows us to determine in advance its properties, and therefore, the quality for ornamental use. On the other hand, the localization of anisotropy using the GPR technique will make it possible to improve the planning of the rock exploitation in order to increase yields. Both integrated geophysical techniques are effective for assessing the quality of ornamental rock and thus can serve as useful tools in mine planning to improve yields and costs.
机译:观赏性岩石开采的低产量仍然是该行业最重要的问题之一。这个事实通常与岩石中存在各向异性有关,这使得提取块体变得困难。优化的开采计划以及对矿床的地质了解,可以提高产量。在这项工作中,对Macael(西班牙)的大理石开采进行了研究,以测试无损地球物理勘探方法(GPR和ERI)作为表征矿床地质特征的工具的能力。众所周知,ERI方法可提供更大的穿透深度。通过使用这种技术,可以区分大理石和下层的云母岩之间的边界,要开采的单元的形态,甚至要识别的断裂带。因此,该技术可用于研究的早期阶段,以估算矿床的储量。 GPR方法具有较低的渗透深度,能够提供更详细的信息。具体而言,它可以检测大理石单元内部相的横向和垂直变化以及岩石(裂缝或孔洞)的各向异性。该技术将适合用于第二阶段的研究。一方面,它对于表征岩石的质地和织物非常有用,这使我们能够提前确定其性质,从而确定装饰性使用的质量。另一方面,使用GPR技术对各向异性进行定位将可以改善岩石开采的规划,以提高产量。两种综合的地球物理技术都可以有效地评估装饰性岩石的质量,因此可以作为矿山规划中提高产量和成本的有用工具。

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