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The development and integrated simulation of a variable water flow energy saving strategy for deep-mine cooling systems

机译:深井冷却系统变水流量节能策略的开发与集成仿真

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Increasing the energy efficiency of deep level mine cooling systems is an important method to improve the sustainability of the mining industry. Cooling systems consume up to 25% of the total electricity used on deep mines. These systems are integrated with the water reticulation system to provide chilled service water to the mine and provide cool ventilation air. A new energy efficiency strategy, based on variable water flow, was developed for the unique demands of an integrated mine cooling system. The strategy is based on procedures such as matching the evaporator thermal requirements to the demand for chilled water, adapting the condensers to the heat load, and matching the bulk air cooler with the demand of ventilation air requirements. A suitable simulation model of integrated mine cooling systems was developed, verified and used to predict the potential results of implementing the new strategy on actual mine systems. In this paper, an overview of the developed strategy and simulation model is presented. The verified simulations show that a decrease of 33% in overall electrical energy consumption is possible by implementing the proposed energy saving intervention. The potential is also shown for application and expansion to large systems outside the mining industry.
机译:提高深层矿井冷却系统的能效是提高采矿业可持续性的重要方法。冷却系统消耗的深部矿山电力最多占总电量的25%。这些系统与水网化系统集成在一起,可为矿井提供冷水,并提供凉爽的通风空气。针对集成矿井冷却系统的独特需求,开发了一种基于可变水流量的新能源效率策略。该策略基于以下过程,例如使蒸发器的热需求与对冷冻水的需求相匹配,使冷凝器与热负荷相适应,使大容量空气冷却器与通风空气需求相匹配。开发,验证并使用了合适的集成矿井冷却系统仿真模型,以预测在实际矿井系统上实施新策略的潜在结果。本文概述了已开发的策略和仿真模型。经过验证的仿真结果表明,通过实施拟议的节能干预措施,可以将总电能消耗降低33%。还显示了在采矿业以外的大型系统中应用和扩展的潜力。

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