In this paper we address the implementation of the Generalized Convolution Quadrature (gCQ) presented and analyzed by the authors in a previous paper for solving linear parabolic and hyperbolic convolution equations. Our main goal is to overcome the current restriction to uniform time steps of Lubich's Convolution Quadrature (CQ). A major challenge for the efficient realization of the new method is the evaluation of high-order divided differences for the transfer function in a fast and stable way. Our algorithm is based on contour integral representation of the numerical solution and quadrature in the complex plane. As the main application we consider the wave equation in exterior domains, which is formulated as a retarded boundary integral equation. We provide numerical experiments to illustrate the theoretical results.

Generalized convolution quadrature with variable time stepping. Part II: Algorithm and numerical results / LOPEZ FERNANDEZ, Maria; Sauter, Stefan. - In: APPLIED NUMERICAL MATHEMATICS. - ISSN 0168-9274. - ELETTRONICO. - 94:(2015), pp. 88-105. [10.1016/j.apnum.2015.03.004]

Generalized convolution quadrature with variable time stepping. Part II: Algorithm and numerical results

LOPEZ FERNANDEZ, MARIA
;
2015

Abstract

In this paper we address the implementation of the Generalized Convolution Quadrature (gCQ) presented and analyzed by the authors in a previous paper for solving linear parabolic and hyperbolic convolution equations. Our main goal is to overcome the current restriction to uniform time steps of Lubich's Convolution Quadrature (CQ). A major challenge for the efficient realization of the new method is the evaluation of high-order divided differences for the transfer function in a fast and stable way. Our algorithm is based on contour integral representation of the numerical solution and quadrature in the complex plane. As the main application we consider the wave equation in exterior domains, which is formulated as a retarded boundary integral equation. We provide numerical experiments to illustrate the theoretical results.
2015
variable step size: convolution quadrature; convolution equations; retarded potentials; boundary integral equations; wave equation; fast algorithms; contour integral methods
01 Pubblicazione su rivista::01a Articolo in rivista
Generalized convolution quadrature with variable time stepping. Part II: Algorithm and numerical results / LOPEZ FERNANDEZ, Maria; Sauter, Stefan. - In: APPLIED NUMERICAL MATHEMATICS. - ISSN 0168-9274. - ELETTRONICO. - 94:(2015), pp. 88-105. [10.1016/j.apnum.2015.03.004]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/843885
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