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DESIGN AND IMPLEMENTATION OF AN ON-LINE OPTIMISING CONTROL SYSTEM FOR PROCESSING THE SADIOLA HILL OXIDISED GOLD ORE

机译:用于加工鞍山氧化金矿的在线优化控制系统的设计与实现

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Sadiola Hill mine is located in the sub-Saharan part of Mali. In its first two years of operations, Sadiola Hill mine had already exceeded expectations with respect to profitability, plant capacity, metallurgical recovery, cash costs and social integration into the area. The advanced control system installed by the authors has been a major contributor in the substantial throughput of the mill over the design tonnage with no loss of recovery. The run-of-mine ore at Sadiola consists of soft clays with a varying percentage of grit, producing a high viscosity slurry. The percentage of grit fed to the plant varies on an hourly basis. This combination was expected to have a large impact on the milling circuit and determined that the early installation of an expert mill control system would be advantageous. Svedala Cisa OCS, was selected as the most suitable support software. The operational rules and control philosophy are housed in the OCS graphic-oriented fuzzy expert system while a model-based Soft Sensor has the remarkable ability to detect the variations in grit in the feed. Designed during the second half of 1996, commissioning of the system began in March 1997, the OCS was fully on-line by September. With the implementation of the optimising control strategy a throughput of 5.0 million tons relative to the target of 4.4 million tons was achieved for the 1998-operating year. The Sadiola project confirms that advanced process control techniques are among the most cost-and time-effective methods of improving metallurgical plant performance. The recipe that worked at Sadiola is a mix of metallurgical expertise, proper software selection, adequate design of control philosophy, and excellent plant support and follow-up. The early decision, design and installation of the mill control system has resulted in an enhanced Return on Investment.
机译:Sadiola Hill Mine位于马里的撒哈拉部分。在其前两年的运营中,萨达伊州山地矿山已经超出了盈利,植物能力,冶金恢复,现金成本和社会融合到该地区的期望。作者安装的先进控制系统是轧机在设计吨位上的大量吞吐量中的主要因素,没有恢复。 Sadiola的矿井矿石矿石由软粘土组成,具有不同百分比的砂砾,产生高粘度浆料。饲喂到工厂的砂砾的百分比每小时变化。这种组合预计对铣削电路产生了很大的影响,并确定了专家铣床控制系统的早期安装将是有利的。 Svedala Cisa OCS被选为最合适的支持软件。运营规则和控制理念位于OCS图形导向的模糊专家系统,而基于模型的软传感器具有显着的能力,可以检测饲料中的砂砾的变化。在1996年下半年设计,系统的调试开始于1997年3月,OCS在9月完全在线。随着优化控制策略的实施,1998年营业年度达到了440万吨目标的50万吨的吞吐量。 Sadiola项目证实,先进的过程控制技术是提高冶金植物性能的最具成本和时间有效的方法之一。在Sadiola工作的食谱是冶金专业知识,适当的软件选择,控制哲学设计,以及出色的植物支持和随访。研磨控制系统的早期决策,设计和安装导致了增强的投资回报。

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