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Novel Use of Ice Thermal Storage for Energy Management on a Mine Refrigeration Plant

机译:新型使用冰热储存在矿井制冷厂的能源管理

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The original bulk air cooling system at this particular mine made use of two water chilling refrigeration machines to produce peak cooling of approximately 12 MWR with a downcast air temperature of about 7°C; however, as the shaft is not used for transporting personnel, the opportunity existed to supply more cooling to the mine by lowering the downcast air temperature. An ice storage facility has been constructed and provides a range of opportunities in operating the system: colder air temperature sent to the shaft, enabled by using near-zero degree water produced by melting ice to cool the air; electricity time-of-use management, by shifting electricity usage out of peak tariff periods; and increased peak cooling capacity, by melting ice while chilling water. Ice is created in the storage facility at night while the ambient air temperature is low and then melted to produce cold water when required by the cooling process. An ice dam was constructed and serpentine stainless steel coils installed where the ice is produced; one of the refrigeration machines was converted to chill a glycol solution to subzero temperatures to create the ice on the coils; a plate heat exchanger was installed to allow the glycol chiller to act as a water chiller as well; and a third spray stage was added to the bulk air cooler to utilise the near-zero water. This paper describes the thermodynamic design, construction and performance assessment of the new system, which is unique, novel and represents the state-of-the-art of this type of cooling system and energy management.
机译:该特殊矿井的原始散装空气冷却系统采用了两种水冷制冷机,产生大约12 MWR的峰冷却,较低的空气温度约为7°C;然而,随着轴不用于运输人员,由于降低垂直空气温度,存在机会以供应更多的冷却到矿井。已经构建了一种冰储存设施,并提供了一系列操作系统的机会:通过使用熔化冰产生的接近零度水来冷却空气,使空气温度较冷;电力时间管理,通过将电力使用超出高峰关税期间;通过融化冰而冷水而增加的峰值冷却能力增加。在夜间在储存设施中创建冰,而环境空气温度低,然后在冷却过程需要时熔化以产生冷水。建造了冰大坝,并安装了冰块的蛇形不锈钢线圈;转化了其中一种制冷机器以将乙二醇溶液冷却至分零温度以在线圈上产生冰;安装板式热交换器以使乙二醇冷却器也充当水冷杯;并将第三喷雾阶段添加到散装空气冷却器中以利用接近零水。本文介绍了新系统的热力学设计,施工和性能评估,这是独特的,新颖的,代表这种类型的冷却系统和能源管理的最先进。

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