Incorporating Krylov Subspace Methods in the ETDRK4 Scheme
| dc.contributor.advisor | Bruce Wade | |
| dc.contributor.committeemember | Bruce Wade | |
| dc.contributor.committeemember | Dexuan Xie | |
| dc.contributor.committeemember | Lei Wang | |
| dc.creator | Allen, Jeffrey H. | |
| dc.date.accessioned | 2025-01-16T19:30:11Z | |
| dc.date.available | 2025-01-16T19:30:11Z | |
| dc.date.issued | 2014-05-01 | |
| dc.description.abstract | A modification of the (2,2)-Pade algorithm developed by Wade et al. for implementing the exponential time differencing fourth order Runge-Kutta (ETDRK4) method is introduced. The main computational difficulty in implementing the ETDRK4 method is the required approximation to the matrix exponential. Wade et al. use the fourth order (2,2)-Pade approximant in their algorithm and in this thesis we incorporate Krylov subspace methods in an attempt to improve efficiency. A background of Krylov subspace methods is provided and we describe how they are used in approximating the matrix exponential and how to implement them into the ETDRK4 method. The (2,2)-Pade and Krylov subspace algorithms are compared in solving the one and two dimensional Allen-Cahn equation with the ETDRK4 scheme. We find that in two dimensions, the Krylov subspace algorithm is faster, provided we have a spatial discretization that produces a symmetric matrix. | |
| dc.identifier.uri | http://digital.library.wisc.edu/1793/88236 | |
| dc.relation.replaces | https://dc.uwm.edu/etd/392 | |
| dc.subject | Allen-Cahn | |
| dc.subject | ETDRK4 | |
| dc.subject | Krylov Subspace Methods | |
| dc.subject | Lanczos Iteration | |
| dc.subject | Matrix Exponential | |
| dc.title | Incorporating Krylov Subspace Methods in the ETDRK4 Scheme | |
| dc.type | thesis | |
| thesis.degree.discipline | Mathematics | |
| thesis.degree.grantor | University of Wisconsin-Milwaukee | |
| thesis.degree.name | Master of Science |
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