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Medium Density Control for Coal Washing Dense Medium Cyclone Circuits

机译:洗煤重介质旋流器回路的中密度控制

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摘要

The dense medium cyclone (DMC) process used in coal beneficiation plants is studied from a control system perspective. Employing the dynamic model of the DMC process derived from mass flow balance, a model-based control strategy is proposed. The controller adjusts the density of medium used to enhance separation in the DMC process according to measurements on percentages of different components in raw coal. The first objective of the control is to maintain the carbon content in the clean coal to a set level. The second purpose is to minimize energy consumption of the DMC process in view of the fast increasing electricity price. The controller solves an optimization problem formulated to determine the density of medium whenever new measurements are available. Both coal quality and DMC operational constraints are accounted for. Simulations, based on measured plant data, are carried out to verify the feasibility and effectiveness of the control strategy designed. The results show that the designed controller is able to fulfill its purpose satisfactorily when the characteristics of the raw coal varies and when measurement uncertainties are in presence.
机译:从控制系统的角度研究了用于选煤厂的重介质旋风分离器(DMC)工艺。利用基于质量流量平衡的DMC过程动力学模型,提出了一种基于模型的控制策略。控制器根据对原煤中不同成分百分比的测量结果,调整用于增强DMC过程分离能力的介质密度。控制的第一目标是将清洁煤中的碳含量保持在设定水平。第二个目的是鉴于电价的快速上涨,将DMC工艺的能耗降至最低。该控制器解决了一个优化问题,该问题被公式化为只要有新的测量结果即可确定介质的密度。煤炭质量和DMC操作限制都被考虑在内。基于测得的工厂数据进行仿真,以验证所设计的控制策略的可行性和有效性。结果表明,当原煤的特性发生变化并且存在测量不确定性时,设计的控制器能够令人满意地实现其目的。

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