Numerical solutions for nonlinear mixed integro-differential equation and the neutron transport equation

Author:

Al-Bugami Abeer M.1ORCID

Affiliation:

1. Department of Mathematics and Statistics, Collage of Sciences, Taif University , P.O. Box 11099, Taif 21944, Saudi Arabia

Abstract

In this work, I will discuss the solution of the new in a nonlinear integro-differential equation (NI-DE) form. The NI-DE is established from the nuclear transport equation, which is a linearized derivative of the equation developed by Boltzmann for the kinetic theory of gases. In this study, I will introduce the basic equations and boundary conditions for the formulation of the problem. Then, the NI-DE is established from the planar geometry problem of the neutron transport equation. In addition, I will prove the existence of a unique solution to the problem. In addition, I will use the numerical method to obtain a system of NI-DEs. Therefore, I will prove, under certain conditions, the existence of a unique solution to this system. Finally, I will present two different effective methods to solve the problem numerically, and I will discuss the results.

Publisher

AIP Publishing

Reference38 articles.

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2. New development in the discrete ordinates approximation for the dimensional transport equation;An. Univ. Oradea, Fasc. Math.,2006

3. M. Asadzadeh and A.Kadem, “Spectral method for the transport equation, university of setif faculty of sciences, in computers and mathematics with applications,” Ph.D. thesis (Doctroate Detat, 2006).

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