# Solution of time-dependent advection-diffusion problems with the sparse-grid combination technique and a Rosenbrock solver.

Lastdrager, Boris; Koren, Barry; Verwer, Jan

Computational Methods in Applied Mathematics (2001)

- Volume: 1, Issue: 1, page 86-98
- ISSN: 1609-4840

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topLastdrager, Boris, Koren, Barry, and Verwer, Jan. "Solution of time-dependent advection-diffusion problems with the sparse-grid combination technique and a Rosenbrock solver.." Computational Methods in Applied Mathematics 1.1 (2001): 86-98. <http://eudml.org/doc/226547>.

@article{Lastdrager2001,

author = {Lastdrager, Boris, Koren, Barry, Verwer, Jan},

journal = {Computational Methods in Applied Mathematics},

keywords = {sparse-grid combination technique; time-dependent advection-diffusion problems; third-order Rosenbrock scheme; adaptive step-size control; approximate matrix factorization; two-dimensional nonlinear Burgers' equations; two-dimensional constant-coefficient problem; error analysis},

language = {eng},

number = {1},

pages = {86-98},

publisher = {Institute of Mathematics of the National Academy of Sciences of Belarus},

title = {Solution of time-dependent advection-diffusion problems with the sparse-grid combination technique and a Rosenbrock solver.},

url = {http://eudml.org/doc/226547},

volume = {1},

year = {2001},

}

TY - JOUR

AU - Lastdrager, Boris

AU - Koren, Barry

AU - Verwer, Jan

TI - Solution of time-dependent advection-diffusion problems with the sparse-grid combination technique and a Rosenbrock solver.

JO - Computational Methods in Applied Mathematics

PY - 2001

PB - Institute of Mathematics of the National Academy of Sciences of Belarus

VL - 1

IS - 1

SP - 86

EP - 98

LA - eng

KW - sparse-grid combination technique; time-dependent advection-diffusion problems; third-order Rosenbrock scheme; adaptive step-size control; approximate matrix factorization; two-dimensional nonlinear Burgers' equations; two-dimensional constant-coefficient problem; error analysis

UR - http://eudml.org/doc/226547

ER -

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