In this article, we review the development of multigrid methods for partial differential equations over the last 30 years, illuminating, in particular, the software question. With respect to industrial software development, we will distinguish "optimal" multigrid, multigrid "acceleration" and "robust" multigrid. Surprisingly, not geometric multigrid but algebraic multigrid (AMG) finally brought the breakthrough. With the software package SAMG, which is based on block-type AMG, systems of partial differential equations can be treated efficiently also. Finally, we outline how SAMG is used for industrial applications
Multigrid technique is a mathematical method which when13; implemented for the numerical solution of...
Since the early 1990s, there has been a strongly increasing demand for more efficient methods to sol...
The multigrid algorithm is a fast and efficient (in fact provably optimal) method for solving a wide...
Multigrid presents both an elementary introduction to multigrid methods for solving partial differen...
The research on multigrid in the 1970s opened revolutionary perspectives for the efficient solution ...
Algebraic multigrid (AMG) methods for directly solving coupled systems of partial differential equat...
Algebraic multigrid (AMG) solves linear systems based on multigrid principles, but in a way that onl...
Will be published in the proceedings of the multigrid conference, Bristol, UK, September 1983Copy he...
Since the early nineties, there has been a strongly increasing demand for more efficient methods to ...
Since the early nineties, there has been a strongly increasing demand for more efficient methods to ...
Abstract. Algebraic Multigrid (AMG) methods were developed originally for nu-merically solving Parti...
The efficient utilization of parallel computational capabilities of modern hardware architecture is ...
In modern large-scale supercomputing applications, Algebraic Multigrid (AMG) is a leading choice for...
Multigrid technique is a mathematical method which when13; implemented for the numerical solution of...
In the last two decades, substantial effort has been devoted to solve large systems of linear equati...
Multigrid technique is a mathematical method which when13; implemented for the numerical solution of...
Since the early 1990s, there has been a strongly increasing demand for more efficient methods to sol...
The multigrid algorithm is a fast and efficient (in fact provably optimal) method for solving a wide...
Multigrid presents both an elementary introduction to multigrid methods for solving partial differen...
The research on multigrid in the 1970s opened revolutionary perspectives for the efficient solution ...
Algebraic multigrid (AMG) methods for directly solving coupled systems of partial differential equat...
Algebraic multigrid (AMG) solves linear systems based on multigrid principles, but in a way that onl...
Will be published in the proceedings of the multigrid conference, Bristol, UK, September 1983Copy he...
Since the early nineties, there has been a strongly increasing demand for more efficient methods to ...
Since the early nineties, there has been a strongly increasing demand for more efficient methods to ...
Abstract. Algebraic Multigrid (AMG) methods were developed originally for nu-merically solving Parti...
The efficient utilization of parallel computational capabilities of modern hardware architecture is ...
In modern large-scale supercomputing applications, Algebraic Multigrid (AMG) is a leading choice for...
Multigrid technique is a mathematical method which when13; implemented for the numerical solution of...
In the last two decades, substantial effort has been devoted to solve large systems of linear equati...
Multigrid technique is a mathematical method which when13; implemented for the numerical solution of...
Since the early 1990s, there has been a strongly increasing demand for more efficient methods to sol...
The multigrid algorithm is a fast and efficient (in fact provably optimal) method for solving a wide...