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首页> 外文期刊>Journal of water and climate change >Numerical estimation of fracture network permeability based on GEOFRAC model for groundwater modeling in a tin mine
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Numerical estimation of fracture network permeability based on GEOFRAC model for groundwater modeling in a tin mine

机译:基于锡矿地下水模型的地理勘测裂缝网络渗透性的数值估计

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摘要

Numerous geological research studies and mining operations have proved that fracture is one of the important factors controlling groundwater flow, mineralization, and ore distribution in metallic deposits. Most current approaches to groundwater flow simulation of naturally fractured media rely on the calculation of equivalent permeability tensors from a discrete fracture network (DFN). This study is aimed at developing a rational two-dimensional DFN by GEOFRAC, a geostatistical method of fracture direction and locations of sample data from a tin mine in the Gaosong area, Gejiu city, southwest China, and utilizing 3,724 outcrop fractures sampled on the ground of mountain Gaosong. Principal inputs of the DFN are density, direction, and continuity of disks that constitute a fracture plane. Fractures simulated by GEOFRAC were validated in that their directions corresponded well with those of the sample fractures. The permeability tensor of each modeling grid was then calculated based on the fracture network constructed. The results showed that GEOFRAC is valuable for two-dimensional DFN modeling in mines and other fracture-controlled geological phenomena, such as groundwater flow and slope failure.
机译:证明骨折是控制地下水流动,矿化和金属沉积物分布的重要因素之一。自然裂缝介质的地下水流模拟的大多数方法依赖于离散断裂网络(DFN)的等效渗透张量的计算。本研究旨在通过Geofrac开发一个合理的二维DFN,该方法是Geofrure方向的地质统计方法和Gaosong地区Geojiu City,中国西南地区的锡矿的样本数据的位置,并利用在地面上采样的3,724个露头骨折高索山。 DFN的主输入是构成断裂平面的磁盘的密度,方向和连续性。通过GeoFRAC模拟的裂缝验证,因为它们的方向与样品骨折的方向相对应得很好。然后基于构造的裂缝网络计算每个建模网格的渗透性张量。结果表明,GeoFRAC对于在地雷和其他骨折控制地质现象中的二维DFN建模有价值,例如地下水流动和坡度故障。

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