Just Suspended Speed Simulation in Torus Reactor Using Multiple Non-Linear Regression Model

Author:

Sayah Houssem Eddine1ORCID,Alouache Ali2,Annad Mohamed3ORCID,Lefkir Abdelouahab3ORCID,Nouri L’hadi1,Selatnia Ammar4,Messaoudi Mohammed5ORCID

Affiliation:

1. LRTA Laboratory, University M’hamed Bouguerra, Boumerdes 35000, Algeria

2. LBSM Laboratory Ecole Normale Supérieure Kouba, Algiers 16000, Algeria

3. Laboratory of TPiTE, National School of Public Works (ENSTP), Kouba 16000, Algeria

4. Ecole Nationale Polytechnique, El Harrach 16200, Algeria

5. Nuclear Research Centre of Birine (CRNB), Djelfa 17200, Algeria

Abstract

In the chemical and water treatment industries, it is necessary to achieve maximum contact between the solid and liquid phase, thus promoting the mass and heat transfer, to obtain a homogeneous solution. Increasing stirring speed is the most recommended solution in different types of reactors: stirred tank, column, and tubular. However, this inadvertently increases the energy consumption of the industry. Determination of the minimum speed, labeled the just suspended speed (Njs) and crucial to attaining homogeneity, has been widely investigated. Numerous studies have been carried out to assess formulas for determining the solid particle speed in various reactor types. Given the limitations of the existing formulations based on a generalization of a unique equation for computing Njs for all soil classifications, it appears that most formulas can only approximate complex phenomena that depend on several parameters. A novel formula was developed, and the results given in this paper demonstrate the effectiveness of generating significant uncertainties for the estimation of Njs. The purpose of this study was the elaboration of experiment-based data-driven formulas to calculate Njs for different particle size classes. Nonlinear multiple regression (MNLR) models were used to generate the new formulas. The gradient descent optimization algorithm was employed to solve the hyperparameters of each novel equation, utilizing supervised learning. A comparison of the data indicated that the unique formulas presented in this study outperformed empirical formulas and provide a useful means for lowering energy consumption, while increasing the heat and mass transfer in torus type reactors.

Funder

the Université M’hamed Bougara de Boumerdes, Algeria

Publisher

MDPI AG

Subject

Filtration and Separation,Analytical Chemistry

Reference33 articles.

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2. Determination of the just suspended speed for solid particle in torus reactor;Alouache;Water Sci. Technol.,2019

3. Mass transfer to microparticles in agitated systems;Armenante;Chem. Eng. Sci.,1989

4. Le bioreacteur torique;Laederach;Inf. Chim.,1984

5. Flowing characteristics in a circular loop reactor;Tanaka;Chem. Eng. Res. Des.,1989

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