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Domain Decomposition Methods in Science and Engineering XXIV (Hardcover, 1st ed. 2018): Petter E. Bjorstad, Susanne C. Brenner,... Domain Decomposition Methods in Science and Engineering XXIV (Hardcover, 1st ed. 2018)
Petter E. Bjorstad, Susanne C. Brenner, Lawrence Halpern, Hyea Hyun Kim, Ralf Kornhuber, …
R4,118 Discovery Miles 41 180 Ships in 18 - 22 working days

These are the proceedings of the 24th International Conference on Domain Decomposition Methods in Science and Engineering, which was held in Svalbard, Norway in February 2017. Domain decomposition methods are iterative methods for solving the often very large systems of equations that arise when engineering problems are discretized, frequently using finite elements or other modern techniques. These methods are specifically designed to make effective use of massively parallel, high-performance computing systems. The book presents both theoretical and computational advances in this domain, reflecting the state of art in 2017.

Parallel Solution of Partial Differential Equations (Hardcover): Petter E. Bjorstad Parallel Solution of Partial Differential Equations (Hardcover)
Petter E. Bjorstad; Edited by M. Luskin
R2,424 Discovery Miles 24 240 Ships in 18 - 22 working days

The papers in this volume are based on lectures given at the IMA workshop on the Parallel Solution of PDE during June 9-13, 1997. The numerical solution of partial differential equations has been of major importance to the development of many technologies and has been the target of much of the development of parallel computer hardware and software. Parallel computer offers the promise of greatly increased performance and the routine calculation of previously intractable problems.This volume contains papers on the development and assessment of new approximation and solution techniques that can take advantage of parallel computers. It will be of interest to applied mathematicians, computer scientists, and engineers concerned with investigating the state of the art and future directions in numerical computing.Topics include domain decomposition methods, parallel multi-grid methods, front tracking methods, sparse matrix techniques, adaptive methods, fictitious domain methods, and novel time and space discretizations. Applications discussed include fluid dynamics, radiative transfer, solid mechanics, and semiconductor simulation.

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