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ITERATION APPROACH FOR SOLVING THE INHOMOGENEOUS BOLTZMANN EQUATION

ITERATION APPROACH FOR SOLVING THE INHOMOGENEOUS BOLTZMANN EQUATION The iteration approach consists of applying Numerical Monte Carlo methods for calculation of linear functional of iterated functions to an integral form of the Boltzmann Equation. It has been successfully used for the timedependent homogeneous case. The same approach, we present in this paper, can be applied for the inhomogeneous case, important from practical point of view. Application of the iteration approach in the particular case of obtaining the Ensemble Monte Carlo algorithm is shown. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering Emerald Publishing

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References (6)

Publisher
Emerald Publishing
Copyright
Copyright © Emerald Group Publishing Limited
ISSN
0332-1649
DOI
10.1108/eb051727
Publisher site
See Article on Publisher Site

Abstract

The iteration approach consists of applying Numerical Monte Carlo methods for calculation of linear functional of iterated functions to an integral form of the Boltzmann Equation. It has been successfully used for the timedependent homogeneous case. The same approach, we present in this paper, can be applied for the inhomogeneous case, important from practical point of view. Application of the iteration approach in the particular case of obtaining the Ensemble Monte Carlo algorithm is shown.

Journal

COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic EngineeringEmerald Publishing

Published: Apr 1, 1991

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