4.5 Article

Two-tier control structure design methodology applied to heat exchanger networks

Journal

CHINESE JOURNAL OF CHEMICAL ENGINEERING
Volume 47, Issue -, Pages 231-244

Publisher

CHEMICAL INDUSTRY PRESS CO LTD
DOI: 10.1016/j.cjche.2021.08.022

Keywords

Heat exchanger networks (HENs); Controllability; Two-tier control structure; Manipulated variable pairing; Control pairing

Funding

  1. Jiangsu Collaborative Innovation Center for Cultural Creativity [XYN1911]
  2. National Natural Science Foundation of China [22008023, 21776035]
  3. Natural Science Foundation of Jiangsu Education Department [20KJB510041]

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This paper investigates the design of control structures for heat exchanger networks (HENs) and presents a two-tier control structure based on a sequential strategy. The proposed methodology incorporates both manipulated variable (MV) pairings and HEN configuration to achieve optimal control and system design requirements.
Because of its paramount importance in the successful industrial control strategy of a given heat exchanger network (HEN), the control structure designs for providing appropriate manipulated variable (MV) and controlled variable pairings have received considerable attention. However, quite frequently HENs with such control structures face the problem of hard constraints, typically holding the HENs at less controlled operating space. So both the MV pairings and the above control pairings should be considered to design a control structure. This paper investigates the systematic incorporation of the two pairings, and presents a methodology for designing such two-tier control structure. This is developed based on the sequential strategy, coupling an indirect-tier with direct-tier control structure design, wherein the intention is realized in the former stage and the latter is implemented for further optimization. The MV identification and pairing are achieved through variations in heat load of heat exchangers to design the indirect-tier control structure. Then the direct-tier control structure is followed the relative gain array pairing rules. With the proposed methodology, on the one hand, it generates an explicit connection between the MV pairings and the HEN configuration, and the quantitative interaction measure is improved to avoid the multiple solutions to break the relationship among all the control pairings into individuals; on the other hand, a two-tier control structure reveals control potentials and control system design requirements, this may avoid complex and economically unfavourable control and HEN structures. The application of proposed framework is illustrated with two cases involving the dynamic simulation analysis, the quantitative assessment and the random test. ?? 2021 The Chemical Industry and Engineering Society of China, and Chemical Industry Press Co., Ltd. All rights reserved.

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