A new conservative difference scheme for the general Rosenau-RLW equation.
Zuo, Jin-Ming, Zhang, Yao-Ming, Zhang, Tian-De, Chang, Feng (2010)
Boundary Value Problems [electronic only]
Similarity:
Zuo, Jin-Ming, Zhang, Yao-Ming, Zhang, Tian-De, Chang, Feng (2010)
Boundary Value Problems [electronic only]
Similarity:
Liang, Zongqi (2009)
Discrete Dynamics in Nature and Society
Similarity:
Hu, Jinsong, Hu, Bing, Xu, Youcai (2011)
Mathematical Problems in Engineering
Similarity:
Hu, Jinsong, Xu, Youcai, Hu, Bing (2010)
Boundary Value Problems [electronic only]
Similarity:
Doboş, Gheorghe (2003)
Analele Ştiinţifice ale Universităţii “Ovidius" Constanţa. Seria: Matematică
Similarity:
Zhong, Penghong, Wang, Shu, Wang, Ke, Bai, Yiping (2010)
Discrete Dynamics in Nature and Society
Similarity:
Goubet, Olivier, Hussein, Manal (2009)
Analele Ştiinţifice ale Universităţii “Ovidius" Constanţa. Seria: Matematică
Similarity:
Jacques Audounet, Jean-Michel Roquejoffre, Hélène Rouzaud (2002)
ESAIM: Mathematical Modelling and Numerical Analysis - Modélisation Mathématique et Analyse Numérique
Similarity:
This article is devoted to the numerical study of a flame ball model, derived by Joulin, which obeys to a singular integro-differential equation. The numerical scheme that we analyze here, is based upon a one step method, and we are interested in its long-time behaviour. We recover the same dynamics as in the continuous case: quenching, or stabilization of the flame, depending on heat losses, and an energy input parameter.
Castro T., Rafael A. (2008)
Revista Colombiana de Matemáticas
Similarity:
Melham, R.S. (1999)
Portugaliae Mathematica
Similarity:
Julien Berton, Robert Eymard (2006)
ESAIM: Mathematical Modelling and Numerical Analysis
Similarity:
We consider the use of finite volume methods for the approximation of a parabolic variational inequality arising in financial mathematics. We show, under some regularity conditions, the convergence of the upwind implicit finite volume scheme to a weak solution of the variational inequality in a bounded domain. Some results, obtained in comparison with other methods on two dimensional cases, show that finite volume schemes can be accurate and efficient.