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Control of the fluidised bed in the pellet softening process

机译:颗粒软化过程中流化床的控制

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Multiple fluidised bed reactors for water softening (crystallisation of calcium carbonate) have been in operation at drinking water treatment plants since the late 1980s. Research on the operation of these pellet reactors has been focussed on investigating crystallisation under constant fluidised bed composition. However, in practice the bed composition varies frequently, despite large effort of plant operators. An improvement in the control of the fluidised bed can be achieved by using model-based multivariable control. Due to the nonlinear behaviour of the reactor, caused by water temperature variation during the year, a nonlinear control approach is used. A particle filter, based on a first-principles model, estimates the state of the softening reactor and a nonlinear model-predictive controller determines the values of the manipulated variables. We show in a simulation experiment, that it is possible to keep the reactor at desired operational parameters (pellet size and bed height) under varying operational conditions. In this way, the cost of pellet softening can be reduced and irregularities prevented. (C) 2007 Elsevier Ltd. All rights reserved.
机译:自1980年代末以来,用于水软化(碳酸钙结晶)的多级流化床反应器已在饮用水处理厂投入运行。这些颗粒反应器的操作研究集中在研究恒定流化床组成下的结晶。然而,尽管工厂操作者付出了巨大的努力,但实际上床的组成经常变化。通过使用基于模型的多变量控制,可以实现流化床控制的改进。由于一年中水温变化引起的反应堆非线性行为,因此采用了非线性控制方法。基于第一原理模型的粒子过滤器估计软化反应器的状态,而非线性模型预测控制器确定操纵变量的值。我们在模拟实验中表明,可以在变化的运行条件下将反应堆保持在所需的运行参数(颗粒尺寸和床高)。这样,可以降低丸粒软化的成本并防止不规则性。 (C)2007 Elsevier Ltd.保留所有权利。

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