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The impact of reducing mine chilled water supply during periods of low production

机译:低产量期间降低矿井冷水供水的影响

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As part of the Demand Side Management (DSM) initiative, Eskom partially funds load management and energy efficiency projects. Large industries are therefore willing participants in the Eskom funded electricity savings programme that hold benefits for all parties. One such industry is the mining sector. The refrigeration and pumping systems used in these sectors are two of the major electricity consumers. As part of DSM initiative, an electrical energy savings project was developed and implemented in the deep mines' chilled water systems. The chilled water system is optimally controlled to reduce underground water usage during certain periods of the day. This ensures that less water is pumped out by the dewatering system, reducing electrical energy usage on the pumps. The study showed that there are positive and negative effects on the mining systems with reduced chilled water use. The financial and thermal impact was determined and compared to the average annual system's cooling output. In some cases the cooling system components showed a combined decrease in cooling effectiveness of 3 to 4 percent of the total average annual cooling output, but also resulted in electrical energy savings.
机译:作为需求方管理(DSM)倡议的一部分,ESKOM部分资金负荷管理和能效项目。因此,大型产业愿意参加ESKOM资助的电力储蓄计划,该计划持有各方的福利。一个这样的行业是采矿部门。这些部门中使用的制冷和泵送系统是两个主要的电力消费者。作为DSM倡议的一部分,在深入的矿井的冷水系统中开发并实施了电气节能项目。冷却水系统可获得最佳地控制,以减少一天的某些时期的地下水。这确保了脱水系统泵出了更少的水,降低了泵上的电能使用。该研究表明,对矿井使用减少的用水量有阳性和负面影响。确定的金融和热影响并与平均年度系统的冷却输出相比。在某些情况下,冷却系统组件的冷却效果的组成率为3%的冷却效果,占总冷却总量的3%至4%,但也导致电能节省。

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