首页> 外文会议>2012 Proceedings of the 9th Industrial and Commercial Use of Energy Conference. >Automated demand side management of clear water pumping and storage for shifting load out of Eskom's domestic peak in the mining industry
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Automated demand side management of clear water pumping and storage for shifting load out of Eskom's domestic peak in the mining industry

机译:自动化的清水抽水和储水需求侧管理,可将负荷移出Eskom国内采矿业的高峰

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摘要

Pneumatic rock drilling equipment is widely used in the mining industry. These drills get very hot during drilling operations and require constant cooling. This is done by feeding clear, cold water down the shaft from a surface storage dam to underground storage dams. Clear water pump stations are situated on various mining levels to return the used hot water back to the surface. Depending on the depth of the shaft, water is either pumped directly to the surface or to an intermediate dam on a higher level. Fissure water increases the complexity of the water reticulation system and makes it impossible to accurately predict the volume of water that must be pumped back to the surface. Presently, many water pumping stations are manually controlled by pump station operators to ensure correct predetermined dam level capacities. Failure to maintain correct dam capacities can cause flooding resulting in serious financial losses due to equipment damage and loss of production. Some shafts are equipped with sensors that control the dam levels. However, these sensors alone cannot be used to carry out effective load-shifting. In this article, two case studies will show that automation of the pumping system will result in financial savings from reduced maintenance and because pumping is carried outduring selected periods of the day when energytariffs are lower. Partial or total Eskom funding also makes these interventions beneficial to consumers who participate in these projects.
机译:气动凿岩设备广泛用于采矿业。这些钻头在钻孔过程中会变得很热,需要不断冷却。这是通过从井面储水坝向井下储水坝向井下输送干净的冷水来完成的。清水泵站位于各个采矿层,以将用过的热水返回地面。根据竖井的深度,水可以直接泵送到地表,也可以泵到较高水位的中间水坝。裂隙水增加了水网系统的复杂性,并使得无法准确预测必须泵回地表的水量。当前,许多水泵站由泵站操作员手动控制以确保正确的预定大坝水位容量。未能保持正确的大坝容量可能会导致洪水,这是由于设备损坏和生产损失而造成的严重财务损失。一些竖井配备了控制坝位的传感器。但是,这些传感器不能单独用于执行有效的负载转移。在本文中,两个案例研究将表明,抽水系统的自动化将通过减少维护而节省资金,并且因为抽水是在一天中的特定时段(电费较低)进行的。 Eskom的部分或全部资助也使这些干预措施对参与这些项目的消费者有利。

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