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Energy recovery from incoming high pressure cold water in deep level mines

机译:在深水平矿山中从进入高压冷水中的能量回收

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The mining industry in South Africa, being responsible for 18% of electricity demand, is seriously looking at alternative, more energy effective processes, without reducing output. Deep level mines require large volumes of cold water at the underground production levels. The energy consumed by these pumping installations constitutes approximately 14% of the mine's overall demand. Normally, water is refrigerated on surface and sent down the mine to depths of more than 3000m below surface. The pressure of this water at a specific production level can be up to 10 times higher than that which is required for work at that level and this excess pressure is then dissipated to the required working pressure by means of Pressure Reduction Valve (PRV) stations. If the potential energy of the pressure of the incoming cold water can be utilised, instead of being dissipated, significant energy savings can be achieved. Two such technologies exist in the mining industry and are described in this paper: The Three Chamber Pump System (3CPS) and the Pump-as-a-Turbine (PaT) system. A case study of such an installation is presented, which shows that electricity savings of between 15%–25% on the mine pumping system can be achieved. Making use of the Eskom IDM funding programme, the payback period can be reduced from about 6 years to less than 3 years.
机译:南非采矿业负责18%的电力需求,严重看着替代,更能有效的过程,而不减少产出。深层矿山在地下生产水平需要大量的冷水。这些泵送装置消耗的能量构成了矿山总体需求的约14%。通常,水在表面上冷冻并送到矿山以上3000多米以下的深度。该水在特定生产水平下该水的压力可以高于该水平工作所需的10倍,然后通过减压阀(PRV)站散发到所需的工作压力的情况下。如果可以利用进入冷水的压力的电位能量,而不是消散,可以实现显着的节能。采矿工业中存在两种这样的技术,本文描述了三个腔室泵系统(3CP)和泵送式汽轮机(PAT)系统。提出了对这种装置的案例研究,表明可以实现矿井泵系统上15%-25%的电力节省。利用ESKOM IDM资助计划,回收期可从约6年减少到不到3年。

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