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Improving cooling system efficiency with pre-cooling

机译:通过预冷却提高冷却系统效率

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Mine production water is cooled on the surface by pre-cooling towers before entering the refrigeration process. Poor water quality and broken draft fans reduce the cooling efficiency and utilisation of a pre-cooling tower. The pre-cooling towers and refrigeration plant operate at full load during the summer months to deliver the required cooling. During the winter months, the bulk air coolers are stopped and extra refrigeration capacity becomes available. For this reason maintenance on the pre-cooling tower is scheduled during the winter months. A case study was done on a mine refrigeration system where the water quality was poor. Dissolved salts form crystals on the heat exchanger's film surface when the temperature of the solution is reduced. Solid particles suspended in the water compounded the situation by further clogging the fill of the pre-cooling tower. The cooling capacity of the pre-cooling tower was greater than required and could be replaced by a lower maintenance fill. The increase in utilisation is at a cost of efficiency. Each of the eight cell's large fan was replaced by four high-speed direct drive fans with an improved efficiency and better utilisation factor. The overall system efficiency increased and resulted in an average power saving of 1.00 MW over a 24 hour day on average on the mine refrigeration system. The system maintained the same level of service to the mine production process.
机译:在进入制冷过程之前,通过预冷塔在表面上冷却矿井生产水。水质差和破碎的风扇造型减少了预冷塔的冷却效率和利用。预冷却塔和制冷厂在夏季以满载的满载运行,以提供所需的冷却。在冬季,散装空气冷却器停止,额外的制冷能力可用。出于这个原因,在冬季安排预先冷却塔的维护。在矿井制冷系统上进行了案例研究,水质较差。当溶液的温度降低时,溶解盐在热交换器的膜表面上形成晶体。通过进一步堵塞预冷塔的填充物,悬浮在水中的固体颗粒复合了这种情况。预冷却塔的冷却能力大于所需,并且可以通过较低的维护填充替换。利用率的增加是以效率的成本。八个电池的大型风扇中的每一个都被四个高速直接驱动器换成了效率提高,利用率更好。整体系统效率增加,导致平均矿井制冷系统平均每天24小时的平均省电。该系统对矿井生产过程保持了相同的服务水平。

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