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Strategic placement of compressors for future mine developments

机译:战略性地为未来的矿山开发布置压缩机

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Rustenburg Platinum Mine (RPM) comprises a complex compressed air pipe network of eight shafts, supplied with air from six compressor plants. One of these compressor plants is situated more than 3 000 m from the air network. Pipe friction losses increase the electrical energy costs making compressed air networks with lengthy supply lines very inefficient. The proposed solution is to decommission this compressor plants and build a new compressor plant closer to one of the shafts. This is expected to improve the service delivery pressure and reduce maintenance costs. The aim of this project will be to determine the optimal location for the compressors in order to optimise the air distribution system. To determine the optimum position the simulation software REMS-DCS (Real-time Energy Management for Dynamic Compressor Selection) was used. The option of replacing the large VK-125 compressor with smaller compressors was also investigated. Also under consideration was whether some parts of the network could be isolated in order to reduce the amount of air distributed between shafts. The optimum location for the compressor plant was determined. The investigation also revealed that the large VK-125 compressor is essential to the successful operation of the air network. None of the shafts could be isolated since an air shortage would occur. An optimal system configuration, including the compressor house location, was identified.
机译:勒斯滕堡的白金矿(RPM)包括一个由八根竖井组成的复杂的压缩空气管网,由六个压缩机厂提供的空气供应。这些压缩机工厂之一位于距空气网络3 000 m以上的位置。管道的摩擦损失增加了电能成本,使得带有较长供应管线的压缩空气网络效率非常低下。提议的解决方案是停用该压缩机工厂,并在其中一个竖井附近建造一个新的压缩机工厂。期望这将改善服务提供压力并降低维护成本。该项目的目的是确定压缩机的最佳位置,以优化空气分配系统。为了确定最佳位置,使用了仿真软件REMS-DCS(用于动态压缩机选择的实时能源管理)。还研究了用较小的压缩机代替大型VK-125压缩机的选择。还正在考虑是否可以隔离网络的某些部分,以减少分配在竖井之间的空气量。确定了压缩机工厂的最佳位置。调查还显示,大型VK-125压缩机对于空中网络的成功运行至关重要。由于会发生空气不足,因此无法隔离任何轴。确定了最佳的系统配置,包括压缩机房的位置。

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