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A Systematic Approach to the Model Development of Reactors and Reforming Furnaces With Fuzziness and Optimization of Operating Modes

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dc.contributor.author ORAZBAYEV, BATYR
dc.contributor.author ZHUMADILLAYEVA, AINUR
dc.contributor.author KABIBULLIN, MADYAR
dc.contributor.author CRABBE, M. JAMES C.
dc.contributor.author ORAZBAYEVA, KULMAN
dc.contributor.author YUE, XIAOGUANG
dc.date.accessioned 2024-11-21T10:56:42Z
dc.date.available 2024-11-21T10:56:42Z
dc.date.issued 2023
dc.identifier.issn 21693536
dc.identifier.other doi10.1109/ACCESS.2023.3294701
dc.identifier.uri http://rep.enu.kz/handle/enu/19160
dc.description.abstract The paper studies the problems of developing interconnected models of aggregates of complex chemical-technological systems (CTS) in conditions of scarcity and fuzziness of the initial information. Since the known methods of model development do not allow for solving these problems, we propose a systematic method that allows the development of a package of models of interconnected aggregates of complex CTS using the available information of a different nature. In the proposed method, formal and informal methods of system analysis are jointly used. Due to synergy and emergence, the proposed system allows the synthesis of the most adequate and effective CTS models using the knowledge, experience, and intuition of experts and other available data. Using the method, we have developed a package of models of interconnected reactors and used it in a case study for a reforming reactor and furnace of the Atyrau refinery catalytic reformer based on available statistical and fuzzy information. To study and optimize the operating modes of the reformer unit, a system of computer simulation and optimization of the reformer unit was created. Comparison of the obtained results of computer modeling and optimization with the results of known deterministic models shows the advantages of the proposed approach in the face of scarcity and fuzziness of the initial information. The importance and novelty of the proposed method lie in the possibility of developing a package of models of interrelated CTS units based on various types of available information. This allows one to systematically simulate and optimize the operating modes of the CTS. The practical significance of the results is that this case study can be successfully applied in the development of models of various technological units for oil refining, petrochemistry, and other industries. ru
dc.language.iso en ru
dc.publisher IEEE Access ru
dc.relation.ispartofseries Том 11, Страницы 74980 - 74996;
dc.subject Decision maker ru
dc.subject fuzzy information ru
dc.subject model package ru
dc.subject system approach ru
dc.title A Systematic Approach to the Model Development of Reactors and Reforming Furnaces With Fuzziness and Optimization of Operating Modes ru
dc.type Article ru


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