Title of article :
A multigrid solver for modeling complex interseismic stress fields
Author/Authors :
Shin، نويسنده , , Seoleun and Zِller، نويسنده , , Gert and Holschneider، نويسنده , , Matthias and Reich، نويسنده , , Sebastian، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Abstract :
We develop a multigrid, multiple time stepping scheme to reduce computational efforts for calculating complex stress interactions in a strike-slip 2D planar fault for the simulation of seismicity. The key elements of the multilevel solver are separation of length scale, grid-coarsening, and hierarchy. In this study the complex stress interactions are split into two parts: the first with a small contribution is computed on a coarse level, and the rest for strong interactions is on a fine level. This partition leads to a significant reduction of the number of computations. The reduction of complexity is even enhanced by combining the multigrid with multiple time stepping. Computational efficiency is enhanced by a factor of 10 while retaining a reasonable accuracy, compared to the original full matrix-vortex multiplication. The accuracy of solution and computational efficiency depend on a given cut-off radius that splits multiplications into the two parts. The multigrid scheme is constructed in such a way that it conserves stress in the entire half-space.
Keywords :
multigrid , Multiple time stepping , Strike-slip fault model
Journal title :
Computers & Geosciences
Journal title :
Computers & Geosciences