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Operation of deep mill level zone mixed flow fans after the first fan upgrade - a parallel fans case study

机译:第一个粉丝升级后深入轧机水平区混合粉丝的运行 - 并行风扇案例研究

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Part of the PT Freeport Indonesia (PTFI) mine production is in the process of transitioning from the deep ore zone (DOZ) mine to the deep mill level zone (DMLZ) mine. The DMLZ mine is the next lift in the caving series and lies 500 m below the current DOZ footprint.In order to reduce the need for a very expensive additional ventilation system for the DMLZ mine, it was decided to reconfigure some infrastructure and upgrade the performance of the three existing DOZ mixed flow ventilation fans in situ, reducing the new fans required to two. This was far less costly than providing complete new installations.These fans are installed in individual underground chambers in DOZ mine exhaust drifts and connected to the DMLZ mine exhaust drifts system in 7 m x 7 m airways size, through sets of 6 m diameter by 500 m high raises.The upgrade process involved replacement of motors, fan shafts and bearings. The existing 1600 kW DOZ mixed flow fans are 3500 mm diameter and operate at a speed of 595 rev/min and were originally designed to deliver 390 m~3/s at 3.3 kPa. Efficiency optimisation may be required at a later date.The upgraded DMLZ fans are required to deliver 425 m~3/s at 3.7 kPa and it was necessary to increase in motor size and speed to 2200 kW at 710 rev/min. This paper will discuss the fan upgrade project and in particular the integration of an unusual ventilation system, which is based on the semi parallel operation of multiple large fans.
机译:PT自由港印度尼西亚(PTFI)矿山生产中的一部分是从深矿区(DOZ)矿井到深轧机级别(DMLZ)矿井的过程。 DMLZINE是下一个洞穴系列中的升力,位于当前Doz脚印以下500米。为了减少对DMLZ矿井的非常昂贵的额外通风系统的需求,决定重新配置一些基础架构并升级性能在现有的三个现有的混合流动通风风扇原位,减少了两个所需的新风扇。这比提供完整的新装置的成本更低。这些风扇安装在Doz矿井排气漂移中的各个地下室,并连接到DMLZ矿井排气漂移系统,在7 MX 7米的气道尺寸,通过直径为500米高升高。升级过程涉及更换电机,风扇轴和轴承。现有的1600 kW Doz混合流风扇直径3500毫米,速度为595升降/分钟,最初设计用于在3.3 kPa提供390 m〜3 / s。在以后可能需要效率优化。升级的DMLZ风扇需要在3.7kPa处提供425 m〜3 / s,并且在710 rev / min时需要增加电机尺寸和速度至2200kw。本文将讨论风扇升级项目,特别是不寻常的通风系统的集成,基于多个大型风扇的半并联操作。

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