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A DFN Approach to Evaluating the Hydrogeological Significance of Lithostatic Unloading in Fractured Strata Around Open-Pit Workings

机译:一种DFN方法,评价露天运作周围裂缝地层岩性卸料的水文地质意义

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The majority of open-pit mineral workings are established in hydrogeological environments in which unsaturated drainage or saturated groundwater flow occurs predominantly via discrete fracture networks. Stress relaxation resulting from open-pit mineral extraction can lead to a change in host rock fracture network configuration and fracture hydraulic properties, with the potential to change local hydrogeological characteristics and groundwater flow regimes. Research being undertaken at the University of Leeds is applying a DFN approach to investigate the hydrogeological significance of such effects in relation to methodologies for impact assessment at mineral sites. The paper presents a summary of the research approach and preliminary results. A discrete finite element approach to geomechanical modelling has been undertaken with simulation of DFN evolution in response to lithostatic unloading for a range of pre-existing discontinuity configurations, lithological types and variations in in-situ stress regimes. Preliminary modelling results have provided improved understanding of the vertical and lateral extent of potential DFN response for a range of excavation profiles. Research results will be used to define conditions under which open-pit mineral extraction could lead to hydrogeologically significant change in fracture flow drainage characteristics at a scale relevant to hydrogeological impact assessment for new and existing mineral workings.
机译:大多数露天矿物运作在水文地质环境中建立,其中不饱和排水或饱和地下水流动主要通过离散裂缝网络发生。露天矿物萃取产生的应力松弛可导致宿主岩石骨折网络配置和断裂液压性能的变化,有可能改变当地水文地质特征和地下水流量。在利兹大学进行的研究正在申请DFN方法来调查矿物部位影响评估方法的水文地质意义。本文提出了研究方法和初步结果的摘要。通过对锂静力学卸载的DFN演化模拟了一种离散的地质力学建模方法,响应于一系列预先存在的不连续配置,岩性类型和原位应力制度的变化。初步建模结果提供了改进对一系列挖掘轮廓的潜在DFN响应的垂直和横向范围的理解。研究结果将用于定义露天矿物萃取可能导致骨折流动引流特性的水电站显着变化的条件,以与现有的矿物运作的水文地科影响评估。

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