We assess the impact of an anisotropic space and time grid adaptation technique on our ability to solve numerically solute transport in heterogeneous porous media. Heterogeneity is characterized in terms of the spatial distribution of hydraulic conductivity, whose natural logarithm, Y, is treated as a second-order stationary random process. We consider nonreactive transport of dissolved chemicals to be governed by an Advection Dispersion Equation at the continuum scale. The flow field, which provides the advective component of transport, is obtained through the numerical solution of Darcy's law. A suitable recovery-based error estimator is analyzed to guide the adaptive discretization. We investigate two diverse strategies guiding the (spac...
In this paper, we consider adaptive numerical simulation of miscible displacement problems in porous...
International audienceReactive mixing processes play a central role in a range of porous media syste...
We investigate transport of an inert solute in multidimensional porous media characterized by spatia...
We assess the impact of an anisotropic space and time grid adaptation technique on our ability to so...
We implement a space-time grid adaptation procedure to efficiently improve the accuracy of numerical...
An accurate modeling of solute transport processes in the subsurface is a crucial issue with a view ...
We study the upscaling and prediction of large-scale solute dispersion in heterogeneous porous media...
Transport and spreading behaviour of reactive solutes in heterogeneous porous formations is consider...
<p>Transport and spreading behaviour of reactive solutes in heterogeneous porous formations is...
We study the mixing dynamics of solute blobs in the flow through saturated heterogeneous porous medi...
Solute transport in randomly heterogeneous media is described by stochastic transport equations that...
We study the mixing dynamics of solute blobs in the flow through saturated heterogeneous porous medi...
In this paper, we consider adaptive numerical simulation of miscible displacement problems in porous...
International audienceReactive mixing processes play a central role in a range of porous media syste...
We investigate transport of an inert solute in multidimensional porous media characterized by spatia...
We assess the impact of an anisotropic space and time grid adaptation technique on our ability to so...
We implement a space-time grid adaptation procedure to efficiently improve the accuracy of numerical...
An accurate modeling of solute transport processes in the subsurface is a crucial issue with a view ...
We study the upscaling and prediction of large-scale solute dispersion in heterogeneous porous media...
Transport and spreading behaviour of reactive solutes in heterogeneous porous formations is consider...
<p>Transport and spreading behaviour of reactive solutes in heterogeneous porous formations is...
We study the mixing dynamics of solute blobs in the flow through saturated heterogeneous porous medi...
Solute transport in randomly heterogeneous media is described by stochastic transport equations that...
We study the mixing dynamics of solute blobs in the flow through saturated heterogeneous porous medi...
In this paper, we consider adaptive numerical simulation of miscible displacement problems in porous...
International audienceReactive mixing processes play a central role in a range of porous media syste...
We investigate transport of an inert solute in multidimensional porous media characterized by spatia...