High‐order algorithms for Riesz derivative and their applications (V) |
| |
Authors: | Hengfei Ding Changpin Li |
| |
Affiliation: | 1. School of Mathematics and Statistics, Tianshui Normal University, Tianshui, China;2. Department of Mathematics, Shanghai University, Shanghai, China |
| |
Abstract: | In this article, based on the idea of combing symmetrical fractional centred difference operator with compact technique, a series of even‐order numerical differential formulas (named the fractional‐compact formulas) are established for the Riesz derivatives with order . Properties of coefficients in the derived formulas are studied in details. Then applying the constructed fourth‐order formula, a difference scheme is proposed to solve the Riesz spatial telegraph equation. By the energy method, the constructed numerical algorithm is proved to be stable and convergent with order , where τ and h are the temporal and spatial stepsizes, respectively. Finally, several numerical examples are presented to verify the theoretical results.© 2017 Wiley Periodicals, Inc. Numer Methods Partial Differential Eq 33: 1754–1794, 2017 |
| |
Keywords: | fractional‐compact numerical differential formula Riesz derivative Riesz spatial telegraph equation stability and convergence |
|
|