Please use this identifier to cite or link to this item: http://earchive.tpu.ru/handle/11683/70708
Title: Development of a Two-Fluid Hydrodynamic Model for a Riser Reactor
Authors: Vorobjev, Anatoly Mikhaylovich
Antonov, Artem Viktorovich
Ivashkina, Elena Nikolaevna
Ivanchina, Emilia Dmitrievna
Chuzlov, Vyacheslav Alekseevich
Kaliev, Toleubek Arystanbekovich
Keywords: каталитический крекинг; гидродинамическое моделирование; многофазные потоки; catalytic cracking; hydrodynamic modeling; multiphase flow; two-fluid model
Issue Date: 2022
Publisher: Wiley-VCH Verlag GmbH & Co. KGaA
Citation: Development of a Two-Fluid Hydrodynamic Model for a Riser Reactor / A. M. Vorobjev, A. V. Antonov, E. N. Ivashkina [et al.] // Applied Thermal Engineering. — 2022. — Vol. 45. — [P. 709-716].
Abstract: ANSYS Fluent is used to examine the mixing of catalyst zeolite particles with petroleum feedstock and water vapor in a fluid catalytic cracking (FCC) riser. A two-fluid model is developed for tracking catalyst particles and gas mixture in a riser, modeling the granular and gaseous phases as two interpenetrating continua. The hydrodynamic flows are analyzed with the aim to single out the principal physical effects that determine the distribution of particles. The results are compared with a study that is based on a non-isothermal reactive model. It is demonstrated that the simplistic purely hydrodynamic model generates similar flow fields. The developed model is valuable for improvements of modern FCC risers. The model is applied for understanding the hydrodynamics of an S-200 KT-1/1 industrial unit.
URI: http://earchive.tpu.ru/handle/11683/70708
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