THE CONTROL ALGORITHM FOR CONCENTRATION OF THE TARGET PRODUCT IN THE CHEMICAL REACTOR

Александр Лабутин, A. Labutin, Владимир Невиницын, Vladimir Nevinitsyn, Галина Анатоліївна Волкова, G. Volkova, Владислав Сальков, V. Sal'kov
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引用次数: 1

Abstract

A chemicalreactor is one of the common apparatuses in chemical industry. Despite a large number of theworks related to automation and control of chemical reactors, the problem of synthesizing controlsystems that provide the maintenance of optimal modes of their operation remains practically unsolved.This is related to the principal feature of chemical reactors as controlled objects, namely,manifold, non-linearity, and multi-coupling. An outcome from this situation is to develop a physicaltheory of control, in particular synergetic control theory. The problem of analytical synthesis of nonlinear control law for the concentration of the target component in a chemical reactor has been solved.We use the methods of synergetic control theory, simulation methodsand methods of computational experiment. The paper deals with continuous stirred tank reactor equipped with a mechanicalstirrer and cooling jacket. The reactor operates in the polytropic mode. The multistep series-parallelexothermic process is carried out in the reactor. The objective of chemical reactor operationis to obtain the key product of specified concentration.
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化学反应器中目标产物浓度的控制算法
化学反应器是化学工业中常用的设备之一。尽管有大量与化学反应器的自动化和控制有关的工作,但综合控制系统提供维护其最佳运行模式的问题实际上仍然没有解决。这与化学反应器作为被控对象的主要特征,即流形、非线性和多耦合有关。这种情况的一个结果是发展控制的物理理论,特别是协同控制理论。解决了化学反应器中目标组分浓度非线性控制律的解析综合问题。我们采用了协同控制理论、仿真方法和计算实验方法。本文研究了一种配有机械搅拌器和冷却夹套的连续搅拌槽式反应器。反应器在多向模式下工作。在反应器中进行了多步串联-平行放热过程。化学反应器操作的目的是获得规定浓度的关键产物。
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