A fourth-order compact finite difference method for nonlinear higher-order multi-point boundary value problems

  • Yuan Ming Wang*
  • , Wen Jia Wu
  • , Ravi P. Agarwal
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

A fourth-order compact finite difference method is proposed for a class of nonlinear 2nth-order multi-point boundary value problems. The multi-point boundary condition under consideration includes various commonly discussed boundary conditions, such as the three- or four-point boundary condition, (n+2)-point boundary condition and 2(n-m)-point boundary condition. The existence and uniqueness of the finite difference solution are investigated by the method of upper and lower solutions, without any monotone requirement on the nonlinear term. The convergence and the fourth-order accuracy of the method are proved. An efficient monotone iterative algorithm is developed for solving the resulting nonlinear finite difference systems. Various sufficient conditions for the construction of upper and lower solutions are obtained. Some applications and numerical results are given to demonstrate the high efficiency and advantages of this new approach.

Original languageEnglish
Pages (from-to)3226-3245
Number of pages20
JournalComputers and Mathematics with Applications
Volume61
Issue number11
DOIs
StatePublished - Jun 2011

Keywords

  • 2nth-order multi-point boundary value problem
  • Compact finite difference method
  • Fourth-order accuracy
  • Monotone iterations
  • Upper and lower solutions

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