We propose a new, efficient, adaptive algebraic multigrid (AMG) solver strategy for the discrete systems of partial differential equations arising from structured or unstructured grid models in reservoir simulation. The proposed strategy has been particularly tailored to linear systems of equations arising in adaptive implicit methods. The coarsening process of the AMG method designed automatically employs information on the physical structure of the models; as a smoother, an adaptive ILUT method is employed, taking care of an efficient solution of the hyperbolic parts whilst providing adequately smooth errors for the elliptic parts. To achieve a good compromise of high efficiency and robustness for a variety of problem classes - ranging fr...
Reservoir simulators are important tools used in the oil industry for evaluating field opportunity, ...
The algebraic multigrid (AMG) approach provides a purely algebraic means to tackle the efficient sol...
Algebraic Multigrid (AMG) is an efficient multigrid method for solving large problems, using only th...
We propose a new, efficient, adaptive algebraic multigrid (AMG) solver strategy for the discrete sys...
A primary challenge for a new generation of reservoir simulators is the accurate description of mult...
Algebraic multigrid (AMG) methods for directly solving coupled systems of partial differential equat...
Fully implicit petroleum reservoir simulations result in huge, often very ill-conditioned linear sys...
A serious bottleneck in performing large-scale numerical simulations is the speed with which the und...
Fully implicit black-oil simulations result in huge, often very-ill-conditioned, linear systems of e...
Reservoir models can easily incorporate millions or even billions of unknowns. Algebraic multigrid (...
Reservoir models can easily incorporate millions or even billions of unknowns. Algebraic multigrid (...
Algebraic Multiscale (AMS) is a recent development for the construction of efficient linear solvers ...
Multigrid methods are studied for solving elliptic partial differential equations. Focus is on paral...
The algebraic multigrid (AMG) approach provides a purely algebraic means to tackle the efficient sol...
Reservoir simulators are important tools used in the oil industry for evaluating field opportunity, ...
Reservoir simulators are important tools used in the oil industry for evaluating field opportunity, ...
The algebraic multigrid (AMG) approach provides a purely algebraic means to tackle the efficient sol...
Algebraic Multigrid (AMG) is an efficient multigrid method for solving large problems, using only th...
We propose a new, efficient, adaptive algebraic multigrid (AMG) solver strategy for the discrete sys...
A primary challenge for a new generation of reservoir simulators is the accurate description of mult...
Algebraic multigrid (AMG) methods for directly solving coupled systems of partial differential equat...
Fully implicit petroleum reservoir simulations result in huge, often very ill-conditioned linear sys...
A serious bottleneck in performing large-scale numerical simulations is the speed with which the und...
Fully implicit black-oil simulations result in huge, often very-ill-conditioned, linear systems of e...
Reservoir models can easily incorporate millions or even billions of unknowns. Algebraic multigrid (...
Reservoir models can easily incorporate millions or even billions of unknowns. Algebraic multigrid (...
Algebraic Multiscale (AMS) is a recent development for the construction of efficient linear solvers ...
Multigrid methods are studied for solving elliptic partial differential equations. Focus is on paral...
The algebraic multigrid (AMG) approach provides a purely algebraic means to tackle the efficient sol...
Reservoir simulators are important tools used in the oil industry for evaluating field opportunity, ...
Reservoir simulators are important tools used in the oil industry for evaluating field opportunity, ...
The algebraic multigrid (AMG) approach provides a purely algebraic means to tackle the efficient sol...
Algebraic Multigrid (AMG) is an efficient multigrid method for solving large problems, using only th...