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Efficient monitoring of mine compressed air savings

机译:高效监测矿井压缩空气

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In 2011 Eskom experienced a peak in electricity demand reaching 89% of the utility's generation capacity. The continued high utilisation rate reduced opportunities to perform essential maintenance on the system. In an effort to alleviate the pressure on the grid Eskom instated several initiatives. One of these initiatives is Demand Side Management (DSM). Electricity load is successfully reduced by DSM projects, but many DSM savings are not sustained throughout the project lifetime. This paper focusses on the development and implementation of a new method to monitor DSM savings. It includes the reliable collection of data from on-site instrumentation, processing and storing of the data in a central database and generating savings reports. This is done automatically on a daily basis. The mining sector consumes 14.5% of the total electricity generated by Eskom. Mine compressed air systems can consume as much as 40% of a mine's total electricity requirements. This makes mine compressed air systems an ideal study for the new monitoring system. A number of project implementations are used as case studies to measure and interpret the effectiveness and value of this system. It saves a significant amount of man-hours and proves to be of great value in improving the sustainability of DSM projects.
机译:2011年,ESKOM在电力需求中经历了达到效用的89%的峰值。持续的高利率率降低了对系统执行基本维护的机会。努力减轻电网ESKOM的压力,提出了几个举措。其中一个举措是需求方管理(DSM)。 DSM项目成功减少了电力负荷,但在整个项目寿命期间不持续许多DSM节省。本文侧重于开发和实施新方法来监控DSM储蓄。它包括来自现场仪器的可靠集合,从内部数据库中的数据处理和存储数据并生成节省报告。这是每天自动完成的。采矿部门消耗ESKOM产生的总电力的14.5%。矿山压缩空气系统可以消耗多达40%的矿山的总电力要求。这使得矿山压缩空气系统成为新监控系统的理想研究。许多项目实现被用作衡量和解释该系统的有效性和价值的案例研究。它可以节省大量的人数,并证明在提高DSM项目的可持续性方面具有重要价值。

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