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Simulation of groundwater mounding at a West Australian mine site

机译:西澳大利亚矿场的地下水堆模拟

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Few studies exist that investigate the potential impact of groundwater mounding due to mining near an environmentally sensitive area in a real world scenario. This paper presents a case study in which the development and extent of groundwater mounding due to mining near the Shark Bay World Heritage Property (SBWHP) in Western Australia (WA) has been simulated. A numerical model was developed that enabled a detailed simulation of groundwater level response to the discharge of a water saturated sand slurry during mining at the project site near Coburn in WA. The simulations showed that after a mining period of around two and a half years, a groundwater mound of around 2.5 m would develop along the margins of the open pit at the SBWHP boundary. 500 m further into the SBWHP, the groundwater mound is predicted to be around 1 m high. A depth to water analysis showed that the groundwater may come within 4 m of the surface in the area of a sand dune swale that traverses from SW to NE near the SBWHP boundary. The results of these analyses provide a perspective of mine-related impacts in a unique environment. The results have been included in an environmental impact assessment (EIA) and used for mine water balance predictions.
机译:在现实世界中,很少有研究调查在环境敏感区域附近开采而造成的地下水堆积的潜在影响。本文提出了一个案例研究,其中模拟了西澳大利亚州(WA)鲨鱼湾世界遗产(SBWHP)附近采矿导致的地下水堆积的发展和程度。开发了一个数值模型,可以对华盛顿州科本附近的项目现场采矿期间地下水位对饱和水砂浆排放的响应进行详细模拟。模拟表明,经过大约两年半的开采期后,沿着SBWHP边界露天矿的边缘将形成一个约2.5 m的地下水丘。到SBWHP进一步500 m处,地下水丘预计约为1 m高。深度水分析表明,在SBWHP边界附近从SW到NE穿过沙丘的沙丘区域,地下水可能进入地表4 m以内。这些分析的结果为在独特环境中与地雷相关的影响提供了一个视角。结果已包含在环境影响评估(EIA)中,并用于矿井水平衡预测。

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