Subsurface formations are of large scales and are inherently heterogeneous at a multiplicity of scales. Significant spatial heterogeneity and a limited number of measurements lead to uncertainty in characterization of formation properties and thus, to uncertainty in predicting flow in the formations. Such uncertainties add another dimension in probability space to the already large-scale subsurface problems. In this work, we develop an accurate yet efficient approach for solving flow problems in large-scale heterogeneous formations. We do so by obtaining higher- order solutions of the prediction and the associated uncertainty of reservoir flow quantities using the moment-equation approach based on Karhunen-Loéve decomposition (KLME)...
Non-local stochastic moment equations are used successfully to analyze groundwater flow in randomly ...
Natural porous media are highly heterogeneous and characterized by parameters that are often uncerta...
Abstract. In this paper we develop a Stochastic Collocation Method (SCM) for flow in randomly hetero...
This is the published version. Copyright American Geophysical Union[1] A new stochastic approach pro...
Owing to the spatial variability of the media properties, uncertainty quantification for subsurface ...
In this study, the KLME approach, a moment-equation approach based on the Karhunen-Loeve decompositi...
AbstractQuantifying uncertainty effects of coefficients that exhibit heterogeneity at multiple scale...
A numerical moment method (NMM) is applied to study groundwater flow and solute transport in a multi...
This is the published version. Copyright American Geophysical Union[1] A new approach has been devel...
A new approach has been developed for solving solute transport problems in randomly heterogeneous me...
In this paper we develop a Stochastic Collocation Method (SCM) for flow in randomly heterogeneous po...
The mathematical and numerical modeling of groundwater flows in random porous media is studied assum...
. This study is concerned with developing a two-dimensional multiphase model that simulates the move...
This paper presents non-intrusive, efficient stochastic approaches for predicting uncertainties asso...
Quantitative descriptions of flow and transport in subsurface environments are often hampered by unc...
Non-local stochastic moment equations are used successfully to analyze groundwater flow in randomly ...
Natural porous media are highly heterogeneous and characterized by parameters that are often uncerta...
Abstract. In this paper we develop a Stochastic Collocation Method (SCM) for flow in randomly hetero...
This is the published version. Copyright American Geophysical Union[1] A new stochastic approach pro...
Owing to the spatial variability of the media properties, uncertainty quantification for subsurface ...
In this study, the KLME approach, a moment-equation approach based on the Karhunen-Loeve decompositi...
AbstractQuantifying uncertainty effects of coefficients that exhibit heterogeneity at multiple scale...
A numerical moment method (NMM) is applied to study groundwater flow and solute transport in a multi...
This is the published version. Copyright American Geophysical Union[1] A new approach has been devel...
A new approach has been developed for solving solute transport problems in randomly heterogeneous me...
In this paper we develop a Stochastic Collocation Method (SCM) for flow in randomly heterogeneous po...
The mathematical and numerical modeling of groundwater flows in random porous media is studied assum...
. This study is concerned with developing a two-dimensional multiphase model that simulates the move...
This paper presents non-intrusive, efficient stochastic approaches for predicting uncertainties asso...
Quantitative descriptions of flow and transport in subsurface environments are often hampered by unc...
Non-local stochastic moment equations are used successfully to analyze groundwater flow in randomly ...
Natural porous media are highly heterogeneous and characterized by parameters that are often uncerta...
Abstract. In this paper we develop a Stochastic Collocation Method (SCM) for flow in randomly hetero...