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APPLICATION OF THE HFEMC METHOD TO AN ABANDONED COALFIELD IN BELGIUM: FROM CONCEPTUALISATION TO SCENARIO SIMULATIONS

机译:HFEMC方法在比利时遗弃煤田中的应用:从概念化到场景模拟

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The Hybrid Finite Element Mixing Cell (HFEMC) method is a flexible modelling technique particularly suited to mining context (Brouyere et al., 2009). The principle of this method is to subdivide the modelled zone into several subdomains and to select a specific equation, ranging from the simple linear reservoir equation to the groundwater flow in porous media equation, to model groundwater flow in each subdomain. The model can be run in transient conditions, which makes it a useful tool for managing mine closure post-issues such as groundwater rebound and water inrushes.An application of the HFEMC method to an abandoned underground coal mine near the city of Liege (Belgium) is presented. The case study zone has been discretized taking advantage of the flexibility of the method. Then, the model has been calibrated in both steady-state and transient flow regimes based on hydraulic head and water discharge rate observations. Finally, the calibrated model has been used to run several scenarios in order to assess the impacts of possible future phenomena on the hydraulic heads and the water discharge rates. Among others, the simulation of a strong rainfall event shows a quick and strong increase in hydraulic heads in some exploited zones coupled with a strong increase in associated water discharge rates. This could lead to stability problems in the hill slopes near the exploited zones. This kind of predictions can greatly help managing and predicting mine water problems in this particularly complex mining system.
机译:混合有限元混合腔(HFEMC)方法是特别适合于挖掘环境的柔性建模技术(Brouyere等人,2009)。这种方法的原理是将建模区细分为若干子域,并选择特定的方程式,从简单的线性方程储在多孔介质方程地下水流,以便在每个子域模型地下水流动。该模型可以瞬态工况运行,这使得它成为管理矿山关闭后的问题,如地下水的反弹和HFEMC方法的水inrushes.An应用到城市列日附近的一个废弃的地下煤矿的有用工具(比利时)被表达。案例研究区已被离散化采取的方法的灵活性优势。然后,该模型被校准以基于液压头和排水率的观测既稳态和瞬态流动状态。最后,校准模型已被用于以评估其对水头和水排出率未来可能的现象的影响,运行几个场景。其中,一个强降雨事件显示了仿真的快速和强劲增长的水头在加上相关的水排放率的强劲增长一些开发区域。这可能会导致在附近的开采区的山坡稳定性问题。这种预测可以极大地帮助管理和在此特别复杂矿山系统预测矿井水的问题。

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