A reduced-order extrapolating Crank-Nicolson finite difference scheme for the Riesz space fractional order equations with a nonlinear source function and delay

Yanhua Cao, Zhendong Luo
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引用次数: 6

Abstract

This article mainly studies the order-reduction of the classical Crank-Nicolson finite difference (CNFD) scheme for the Riesz space fractional order differential equations (FODEs) with a nonlinear source function and delay on a bounded domain. For this reason, the classical CNFD scheme for the Riesz space FODE and the existence, stability, and convergence of the classical CNFD solutions are first recalled. And then, a reduced-order extrapolating CNFD (ROECNFD) scheme containing very few degrees of freedom but holding the fully second-order accuracy for the Riesz space FODEs is established by means of proper orthogonal decomposition and the existence, stability, and convergence of the ROECNFD solutions are discussed. Finally, some numerical experiments are presented to illustrate that the ROECNFD scheme is far superior to the classical CNFD one and to verify the correctness of theoretical results. This indicates that the ROECNFD scheme is very effective for solving the Riesz space FODEs with a nonlinear source function and delay.
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具有非线性源函数和时滞的Riesz空间分数阶方程的降阶外推Crank-Nicolson有限差分格式
本文主要研究有界域上具有非线性源函数和时滞的Riesz空间分数阶微分方程的经典Crank-Nicolson有限差分格式的降阶问题。为此,首先回顾了Riesz空间FODE的经典CNFD格式以及经典CNFD解的存在性、稳定性和收敛性。然后,通过适当的正交分解,建立了Riesz空间FODEs的一种包含很少自由度但具有完全二阶精度的降阶外推CNFD (ROECNFD)格式,并讨论了该格式解的存在性、稳定性和收敛性。最后,通过数值实验验证了ROECNFD格式远优于经典CNFD格式,并验证了理论结果的正确性。这表明ROECNFD方案对于求解具有非线性源函数和时滞的Riesz空间FODEs是非常有效的。
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