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Improving the efficiency off mine ventilation and cooling systems through active control

机译:通过主动控制提高矿井通风和冷却系统的效率

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摘要

With ever-increasing energy costs and the modern focus on system efficiencies, the practice of 'ventila-tion-on-demand' is gaining momentum. Several examples, ranging from paper studies to practical examples have been recorded and another recent case study is presented here to encourage the practice. In comparison, 'cooling-on-demand' has received far less attention. This paper explores the possible merits of this practice by investigating the theoretical response of cool intake airways and the thermal interaction between the air and the rock, in order to gain a better understanding of the system behaviour and to quantify the possible savings. A case study is presented that demonstrates the improvements that can be achieved. Recent developments that allow live interaction between ventilation network models and on-line monitoring systems, have the potential for intelligent active control and alarming of ventilation and cooling networks. This will facilitate and maximise the benefits to be derived from ventilation and cooling-on-demand.
机译:随着能源成本的不断增加以及现代对系统效率的关注,“按需通风”的实践正日益兴起。记录了从纸面研究到实际例子的几个例子,这里还提供了另一个最近的案例研究来鼓励这种做法。相比之下,“按需冷却”受到的关注要少得多。本文通过研究冷进气道的理论响应以及空气​​与岩石之间的热相互作用来探索这种做法的可能优点,以便更好地了解系统行为并量化可能的节省。提出了一个案例研究,演示了可以实现的改进。允许通风网络模型与在线监测系统之间进行实时交互的最新进展具有对通风和冷却网络进行智能主动控制和报警的潜力。这将促进并最大化从按需通风和冷却中获得的收益。

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