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Practical splitting methods for the adaptive integration of nonlinear evolution equations. Part I: Construction of
Winfried Auzinger1, Harald Hofstätter1, David Ketcheson2
11Institut für Analysis und Scientific Computing, Technische Universität Wien, Wiedner Hauptstrasse 8-10/E101, 1040 Wien, Austria.
Abstract:
We present a number of new contributions to the topic of constructing efficient higher-order splitting methods for the numerical integration of evolution equations. Particular schemes are constructed via setup and solution of polynomial systems for the splitting coefficients. To this end we use and modify a recent approach for generating these systems for a large class of splittings. In particular, various types of pairs of schemes intended for use in adaptive integrators are constructed.
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