Semi-Analytical Solution of a Nonlinear Heat Transfer Model for a Tubular Cocurrent Moving-Bed Reactor With a First-Order Chemical Reaction in the Solid Phase

Author:

Medeiros Lucas I. de S. V.1,Bertoli Sávio L.1,Gonçalves Marcel J.1,Hoffmann Tuany G.1,Angioletti Betina L.1,Meier Henry F.1

Affiliation:

1. Chemical Engineering Department, University of Blumenau, São Paulo Street, Blumenau 89030-000, Brazil

Abstract

Abstract The development of mathematical models plays a fundamental role in the design, optimization, and control of processes. Regarding heat transfer in moving bed reactors, the chemical reaction implies the inclusion of a nonhomogeneous and nonlinear term in model equations, making the analytical integration a very difficult task. Up to date, there is not an analytic and/or a semi-analytic solution to a heat transfer model of a moving bed reactor (MBR) with isothermal walls to the distributed parameters in the solid phase. Therefore, starting from analytical solutions of the associated homogeneous (linear) problems and through the spectral expansion of the nonhomogeneous vector, this work presents strategies for determining semi-analytical solutions of nonhomogeneous and nonlinear problems. An MBR with a first-order chemical reaction in the solid phase—kaolinite dehydroxylation in the kaolinite flash calcination process—is selected as the case study; however, the strategies can easily be applied to other nonlinear models. Results for conversion, and fluid and particle temperatures, are given for different parameter values. The solutions perform stable, fast, and accurate. When compared with a hybrid finite difference and finite analytic (FD&FA) numerical method, the solution showed a very good agreement.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference54 articles.

1. Bertoli, S. L., 1989, “ Transferência de Calor Convectiva e Radiante em Leito de Arrasto (Radiant and Convective Heat Transfer in Moving Beds),” Master's thesis, COPPE, Federal University of Rio de Janeiro, Rio de Janeiro.

2. Radiant and Convective Heat Transfer on Pneumatic Transport of Particles: An Analytical Study;Int. J. Heat Mass Transfer,2000

3. Particle Scale Studies of Heat Transfer in a Moving Bed;Powder Technol.,2015

4. Solid Conduction Effects and Design Criteria in Moving Bed Heat Exchangers;Appl. Therm. Eng.,2011

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