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Optimised dynamic control philosophy for improved performance of mine cooling systems

机译:优化的动态控制理念,提高矿井冷却系统性能

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摘要

Mine workers require substantial cooling and ventilation to work in a safe and habitable environment. Deep level mine cooling systems were identified as significant energy-intensive consumers to supply such cooling. Mine cooling systems can make up to 25% of a mine's total electricity consumption. Coupled with increasing electricity costs, deep level gold mines are struggling to remain competitive. Literature reveals a need for a simple and practical solution to optimise deep level mine cooling systems for improved system performance. In this paper, an optimised dynamic control strategy is presented to optimise the control of mine cooling systems. An integrated dynamic temperature set point algorithm and ambient dry-bulb (DB) temperature prediction model was formulated, implemented and verified. The optimised dynamic control model, when compared to existing control practises, attained a chiller coefficient of performance (COP) improvement and compressor power reduction of 7% and 4% respectively. Implementation results also showed a power demand reduction of 45.7% during the evening high electricity cost period. This strategy demonstrated to be simple and cost effective while showing significant performance improvements for South African mines.
机译:矿业工人需要大量的冷却和通风来在安全可居住的环境中工作。深度矿井冷却系统被确定为显着的能量密集型消费者来提供这种冷却。矿井冷却系统可占矿山总电消耗的25%。加上电力成本的增加,深水平金矿正在努力保持竞争力。文献揭示了一种简单实用的解决方案,可以优化深层矿井冷却系统,以改善系统性能。本文提出了优化的动态控制策略,以优化矿井冷却系统的控制。制定,实施和验证了集成动态温度设定点算法和环境干灯泡(DB)温度预测模型。与现有控制实践相比,优化的动态控制模型达到了冷却器系数的性能(COP)改善和压缩机功率降低分别为7%和4%。实施成果在晚上的高电价期间也表明,减少了45.7%的功率。这一策略表明是简单且成本的效益,同时表现出南非矿山的显着性能改善。

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