In this paper, we apply mode decomposition and interpolatory projection methods to speed up simulations of two-phase flows in highly heterogeneous porous media. We propose intrusive and non-intrusive model reduction approaches that enable a significant reduction in the dimension of the flow problem size while capturing the behavior of the fully-resolved solutions. In one approach, we employ the dynamic mode decomposition (DMD) and the discrete empirical interpolation method (DEIM). This approach does not require any modification of the reservoir simulation code but rather postprocesses a set of global snapshots to identify the dynamically-relevant structures associated with the flow behavior. In a second approach, we project the governing e...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
In this paper, we present a global-local model reduction for fast multiscale reservoir simulations i...
We apply dynamic mode decomposition (DMD) and proper orthogonal decomposition (POD) methods to flows...
In the paper, we propose an online adaptive POD-DEIM model reduction method for fast multiscale rese...
In this paper, we combine concepts of the generalized multiscale finite element method (GMsFEM) and ...
In this paper, we combine discrete empirical interpolation techniques, global mode decompo-sition me...
In this paper, we combine discrete empirical interpolation techniques, global mode decomposition met...
In this work, we propose a novel model order reduction approach for two-phase flow in porous media b...
In this work, we propose a novel model order reduction approach for two-phase flow in porous media b...
We propose an online adaptive local-global POD-DEIM model reduction method for flows in heterogeneou...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
The first part of the thesis serves as an introduction to modelling of flow and transport in porous ...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
In this paper, we present a global-local model reduction for fast multiscale reservoir simulations i...
We apply dynamic mode decomposition (DMD) and proper orthogonal decomposition (POD) methods to flows...
In the paper, we propose an online adaptive POD-DEIM model reduction method for fast multiscale rese...
In this paper, we combine concepts of the generalized multiscale finite element method (GMsFEM) and ...
In this paper, we combine discrete empirical interpolation techniques, global mode decompo-sition me...
In this paper, we combine discrete empirical interpolation techniques, global mode decomposition met...
In this work, we propose a novel model order reduction approach for two-phase flow in porous media b...
In this work, we propose a novel model order reduction approach for two-phase flow in porous media b...
We propose an online adaptive local-global POD-DEIM model reduction method for flows in heterogeneou...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
The first part of the thesis serves as an introduction to modelling of flow and transport in porous ...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...