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A combined pumping test and heat extraction/recirculation trial in an abandoned haematite ore mine shaft, Egremont, Cumbria, UK

机译:一种废弃的盐水矿井井,埃格莱蒙特,坎布里亚,英国综合泵浦试验和热萃取/再循环试验

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摘要

A pumping test at rates of up to 50 L s−1 was carried out in the 256 m-deep Florence Shaft of the Beckermet–Winscales–Florence haematite ore mine in Cumbria, UK, between 8th January and 25th March 2015. Drawdowns in mine water level did not exceed 4 m and the entire interconnected mine complex behaved as a single reservoir. Pumping did, however, induce drawdowns of around 1 m in the St. Bees Sandstone aquifer overlying the Carboniferous Limestone host rock. During a second phase of the pumping test, a proportion of the 11.3–12 °C mine water was directed through a heat pump, which extracted up to 103 kW heat from the water and recirculated it back to the top of the shaft. Provided that an issue with elevated arsenic concentrations (20–30 µg L−1) can be resolved, the Florence mine could provide not only a valuable resource of high-quality water for industrial or even potable uses, it could also provide several hundred to several thousand kW of ground sourced heating and/or cooling, if a suitable demand can be identified. The ultimate constraint would be potential hydraulic impacts on the overlying St Bees Sandstone aquifer. The practice of recirculating thermally spent water in the Florence Shaft produced only a rather modest additional thermal benefit.
机译:2015年1月8日至3月25日期间,在英国坎伯里亚郡贝克默特–温斯卡尔斯–佛罗伦萨赤铁矿矿石矿的256 m深佛罗伦萨矿井中进行了高达50 L s-1速率的抽水试验。最高水位不超过4 m,整个相连的矿山综合体表现为单个水库。但是,抽水的确在覆盖石炭系石灰岩宿主岩石的圣比斯砂岩含水层中引起了约1 m的水位下降。在抽水测试的第二阶段,将部分11.3–12°C的矿井水引导通过热泵,该泵从水中提取出高达103 kW的热量,并将其再循环回竖井顶部。只要能够解决砷浓度升高(20–30 µg L-1)的问题,佛罗伦萨矿不仅可以提供宝贵的优质水源,以用于工业甚至是饮用水,还可以提供数百到如果可以确定合适的需求,则可提供数千千瓦的地面供暖和/或制冷。最终的限制因素是对上覆的圣蜂砂岩含水层的潜在水力影响。在佛罗伦萨竖井中循环利用热水的做法仅产生了相当适度的额外热效益。

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