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The implementation of a Dynamic air Compressor Selector system in mines

机译:动态矿井空压机选择系统的实施

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Generation of compressed air represents 20% of the total electricity usage in the mining industry. There are significant costs associated with generating compressed air and maintaining a compressed air system. This paper focuses on the implementation of a novel dynamic air compressor selector. A Dynamic Compressor Selector (DCS) system was developed to reduce the electricity usage of a compressed air ring. The DCS is a system that combines demand- and supply-side management of a compressed air network. The DCS calculates a pressure set point for compressors and schedules them according to the demand of the end-users. This paper focuses on the DCS implementation process and problems encountered while implementing the DCS technology. The purpose of this study was to determine whether DCS can successfully be implemented on a mine's compressed air system. The DCS was implemented at a platinum mine in South Africa where it was able to calculate pressure set points for the compressors. The supply of- and demand for compressed air was accurately matched resulting in lower overall compressed air usage. The DCS improved compressor scheduling and control whilst limiting compressor cycling. Improved compressor scheduling and control resulted in significant decreases in the electricity used to generate compressed air at the mine. Evening peak electric load reduction in excess of 3 MW were achieved.
机译:压缩空气的产生占采矿业总用电量的20%。与产生压缩空气和维护压缩空气系统相关的大量成本。本文重点介绍新型动态空气压缩机选择器的实现。开发了动态压缩机选择器(DCS)系统以减少压缩空气环的用电量。 DCS是一个结合了压缩空气网络的需求和供应侧管理的系统。 DCS计算压缩机的压力设定点,并根据最终用户的需求进行调度。本文着重于DCS实施过程以及在实施DCS技术时遇到的问题。这项研究的目的是确定DCS是否可以在矿山的压缩空气系统上成功实施。 DCS在南非的一个铂金矿中实施,它能够计算压缩机的压力设定点。精确匹配压缩空气的供需关系,从而降低了总体压缩空气使用量。 DCS在限制压缩机循环的同时改善了压缩机的调度和控制。改进的压缩机调度和控制导致用于矿场产生压缩空气的电力显着减少。达到了超过3兆瓦的峰值峰值电负载降低。

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