改进了矿井冷却系统节能措施的实施策略

P. Maré, J. Marais, J. V. van Rensburg
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引用次数: 22

摘要

2013年,采矿业和工业部门消耗了全球近40%的能源。冷却系统约占一个典型深部矿井总用电量的四分之一。然而,大多数矿井冷却系统缺乏综合管理和有效的优化控制。因此,通过在这些冷却系统上实施节能措施,可以减少电力需求。这些节能措施的成功实施,提高了矿井冷却系统的利用率和性能。但是,现有的执行战略并不能防止矿井冷却系统的利用和性能的恶化。这就需要制定改进的执行战略,重点放在项目的长期可持续性上。因此,在一个矿井冷却系统节能项目的实施过程中,提出并应用了几项新制定的战略。本案例研究中改进的实施策略可实现0.66 MW的可持续节能。因此,根据2013/2014年Eskom的电价,该案例研究每年节省了290万兰特的电费。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved implementation strategies to sustain energy saving measures on mine cooling systems
Mining- and industrial sectors consumed close to 40% of the total energy produced in the world during 2013. Cooling systems account for approximately one quarter of the total electricity consumption of a typical deep-level mine. However, most mine cooling systems lack integrated management and efficient, optimised control. Electricity demand can thus be reduced through the implementation of energy saving measures on these cooling systems. Successful implementation of these energy saving measures results in both improved utilisation and performance of mine cooling systems. Existing implementation strategies, however, do not prevent deterioration of the utilisation and performance of the mine cooling systems. This necessitates the development of improved implementation strategies that focus on long-term project sustainabil i ty. Several newly developed strategies were thus proposed and applied during the implementation of an energy saving project on a mine cooling system. The improved implementation strategies in this case study resulted in sustainable savings of 0.66 MW. The case study therefore achieved an electricity cost saving of R2.9 million per anum, based on the 2013/2014 Eskom electricity tariffs.
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