研究生教育创新计划高水平学术前沿讲座【Dr. Jingmei Qiu】

发布者:系统管理员发布时间:2013-05-22浏览次数:25

研究生教育创新计划高水平学术前沿讲座

报告题目: Error Estimate of Integral Deferred Correction Implicit Runge-Kutta method for Stiff Problems

报告人: Dr. Jingmei Qiu
Department of Mathematics, University of Houston

报告时间:2013年5月28日 15:30-16:30

报告地点:管理科研楼1518

摘要: In this paper, we present an error estimate of integral deferred correction (IDC) method constructed with stiffly accurate implicit Runge-Kutta (R-K) method for singular perturbation problems containing a stiff parameter $/varepsilon$. We focus our analysis on the IDC method using uniform distribution of quadrature nodes, but excluding the left-most endpoint. The uniform distribution of nodes is important for high order accuracy increase in correction loops /cite{christlieb2009integral}, where as the use of quadrature nodes excluding the left-most endpoint lead to an important stability condition for stiff problem, i.e. the method becomes L-stable if
A-stable. In our error estimate, we expand the global error in powers of $/varepsilon$ and show convergence results for these error terms as well as the remainder. Specifically, the order of convergence for the first term in global error (index 1) increase with high order if a high order R-K method is applied in the IDC correction step; the order of convergence for the second term (index 2) is determined by the stageorder of the R-K method for the IDC prediction. Numerical results for the stiff van der Pol equation are demonstrated to verify our error estimate.

 

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