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Cost savings on mine dewatering pumps by reducing preparation- and comeback loads

机译:通过减少准备和恢复工作量来节省矿用脱水泵的成本

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With the introduction of a time-of-use (TOU) tariff structure by Eskom, the implementation of projects that shift load from peak TOU times to times of the day when electrical energy is less expensive has increased. To enable load shifting on mine dewatering pumps, preparation before and recovery after peak TOU is needed for effective results. This induces a preparation- and comeback load in the standard TOU. With an annual increase in TOU tariffs and the rate of increase of standard TOU being greater than that of the peak TOU, a reduction in electrical energy consumption before and after peak TOU is needed. To enable this, a step-by-step control technique was developed to promote the shifting of load from standard-to off-peak TOU, while still realising a full load shift from peak TOU. This technique entails dynamic control ranges of underground dam levels as opposed to the conventional constant control range method. Control range upper and lower bounds were optimised through the formulation and application of equations taking into account various system parameters. Two case studies were used to test the developed technique. Results indicated significant additional financial savings when compared to conventional control methods. Additional savings of R 1,096,056.65 and R 579,394.27 per annum were respectively achieved for both case studies.
机译:随着Eskom引入的使用时间(TOU)费率结构,将负荷从高峰TOU时间转移到电能价格较便宜的一天中的项目的实施增加了。为了使矿井脱水泵能够转移负载,需要在高峰使用时间之前进行准备并在高峰使用之后进行恢复,才能获得有效的结果。这会在标准TOU中引起准备和恢复的负担。随着TOU电费的年度增加以及标准TOU的增速大于高峰TOU的增速,需要降低高峰TOU前后的电能消耗。为此,开发了一种逐步控制技术,以促进负载从标准TOU转移到非高峰TOU,同时仍实现从峰值TOU的完全负载转移。与常规的恒定控制范围方法相反,该技术需要地下大坝水位的动态控制范围。通过考虑各种系统参数的方程式的制定和应用,优化了控制范围的上下限。两个案例研究用于测试开发的技术。与常规控制方法相比,结果表明可节省大量资金。在这两个案例研究中,分别实现了每年分别节省1,096,056.65兰特和579,394.27兰特的节省。

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