A Lyapunov-Sylvester numerical method for solving a reverse osmosis model

Author:

Helali Saloua1,Ben Mabrouk Anouar2,Rashad Mohamed1,Ali Nizar Bel Hadj3,Ȧlanazi Munirah A.1,Alsharif Marwah A.1,Al-Ali Elham M.2,Alharbi Lubna A.4,Mustafa Manahil S.5

Affiliation:

1. Department of Physics, Faculty of Science, University of Tabuk, King Faisal road, Tabuk 47512, Saudi Arabia

2. Department of Mathematics, Faculty of Science, University of Tabuk, King Faisal road, Tabuk 47512, Saudi Arabia

3. National School of Engineers, University of Gabes, Street Omar Elkhattab, Zrig 6029, Gabes, Tunisia

4. Department of Computer Science, Faculty of Computers and Information Technology, University of Tabuk, King Faisal road, Tabuk 47512, Saudi Arabia

5. Department of Statistic, Faculty of Sciences, University of Tabuk, King Faisal road, Tabuk 47512, Saudi Arabia

Abstract

<abstract><p>Clean water is a necessity for many organisms, especially human life. Due to many factors, there is a significant shortage of potable water. This has led to efforts involving recovering water from wastewater or the sea through different technologies. Recently, the desalination of seawater via the reverse osmosis system has shown to be a promising method for drinking water treatment and recovery. Such a technique relies on mathematical models based on many parameters, resulting in special PDEs to model the reverse osmosis system. This paper develops a numerical method to solve a reverse osmosis model. The governing PDE is converted into a Sylvester equation that is proved to be uniquely solvable, stable, consistent, and convergent. The numerical scheme developed is validated with experimental data from the literature, and some numerical simulations.</p></abstract>

Publisher

American Institute of Mathematical Sciences (AIMS)

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