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Coal Washing Plant Cyclone Module Control with A Pump-Storage System

机译:采煤厂旋风模块控制与泵储存系统

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A control system for coal beneficiation dense medium cyclone (DMC) circuit has been presented. The objective of the controller is to minimize energy consumption and the associated cost, and to maintain the quality of fine coal output from the DMC circuit to set level. The former is achieved largely by introducing a pump-storage system and the latter is reached by manipulating the density of the dense medium used in the DMC. The medium circulation, including magnetite recycling and water and make-up magnetite addition are modelled mathematically, according to which the control problem under consideration is formulated. A controller is designed to adjust the positions of two valves responsible for water and magnetite addition, respectively, according to sampled measurements on the composition percentages in the run-of-mine feed coal to the DMC circuit. Using operating data from a real mine, the effectiveness of the presented system is investigated and verified. It is shown that the designed system is able to maintain fine coal quality to a set level while remarkably reducing energy consumption of the coal preparation plant. In the studied case, an energy saving of 62.4%, which translates to 52.78GWh per annum is obtained. This reduced energy consumption then contributes to 5 446 896 US dollars cost savings for the plant per annum.
机译:已经提出了一种用于煤炭矿物浓度密集介质旋风(DMC)电路的控制系统。控制器的目的是最小化能量消耗和相关成本,并保持从DMC电路的精细煤输出的质量来设置水平。前者在很大程度上通过引入泵送系统而实现,并且通过操纵DMC中使用的密度密度来达到后者。在数学上建模介质循环,包括磁铁矿回收和水和水和补充磁铁矿加入,根据该循环,根据该循环进行了建模,根据该循环,根据该循环,根据该循环进行了建模的是制定所考虑的控制问题。控制器设计用于调节负责水和磁铁矿的两个阀门的位置,根据在矿井粉煤中的成分百分比上的采样百分比到DMC电路。使用来自真实矿井的操作数据,研究并验证了所提出的系统的有效性。结果表明,设计的系统能够将微型煤炭质量保持在设定的水平,同时显着降低煤炭制备厂的能量消耗。在所研究的情况下,每年的节能为62.4%,转化为52.78gWh。这种降低的能耗随后为每年的工厂提供546 896美元的成本节约。

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