Solute transport takes place in heterogeneous porous formations, with the log conductivity, Y = ln K, modeled as a stationary random space function of given univariate normal probability density function (pdf) with mean 〈Y〉, variance σY2, and integral scale IY. For weak heterogeneity, the above mentioned quantities completely define the first-order approximation of the longitudinal macrodispersivity αL = σY2 IY. However, in highly heterogeneous formations, nonlinear effects which depend on the multipoint joint pdf of Y, impact αL. Most of the past numerical simulations assumed a multivariate normal distribution (MVN) of Y values. The main aim of this study is to investigate the impact of deviations from the MVN structure upon αL. This is ac...
Subsurface flow and transport settings are typically characterized by spatial variability of the und...
The concept of block-effective dispersivity represents the difference between the classic macrodispe...
In this work, we explore the implications of modeling the logarithm of hydraulic conductivity, Y , a...
Solute transport takes place in heterogeneous porous formations, with the log conductivity, Y = ln K...
Solute transport takes place in heterogeneous porous formations, with the log-conductivity Y modell...
Heterogeneity of the hydraulic properties is one of the main causes of the seemingly random distribu...
We consider here the Lagrangian approach for stochastic modeling of the transport of inert solutes i...
This study presents numerical simulation of conservative solute transport in randomly heterogeneous...
A stochastic analysis of macrodispersion for conservative solute transport in three-dimension (3D) h...
Solute transport in natural formations at the regional scale is influenced by several scales of hete...
Solute transport in natural formations at the regional scale is influenced by several scales of hete...
The paper deals with the transport of nonreactive solute in heterogeneous formations with prescribed...
We study the upscaling and prediction of large-scale solute dispersion in heterogeneous porous media...
Hydrodynamic dispersion is a key controlling factor of solute transport in heterogeneous p...
Subsurface flow and transport settings are typically characterized by spatial variability of the und...
The concept of block-effective dispersivity represents the difference between the classic macrodispe...
In this work, we explore the implications of modeling the logarithm of hydraulic conductivity, Y , a...
Solute transport takes place in heterogeneous porous formations, with the log conductivity, Y = ln K...
Solute transport takes place in heterogeneous porous formations, with the log-conductivity Y modell...
Heterogeneity of the hydraulic properties is one of the main causes of the seemingly random distribu...
We consider here the Lagrangian approach for stochastic modeling of the transport of inert solutes i...
This study presents numerical simulation of conservative solute transport in randomly heterogeneous...
A stochastic analysis of macrodispersion for conservative solute transport in three-dimension (3D) h...
Solute transport in natural formations at the regional scale is influenced by several scales of hete...
Solute transport in natural formations at the regional scale is influenced by several scales of hete...
The paper deals with the transport of nonreactive solute in heterogeneous formations with prescribed...
We study the upscaling and prediction of large-scale solute dispersion in heterogeneous porous media...
Hydrodynamic dispersion is a key controlling factor of solute transport in heterogeneous p...
Subsurface flow and transport settings are typically characterized by spatial variability of the und...
The concept of block-effective dispersivity represents the difference between the classic macrodispe...
In this work, we explore the implications of modeling the logarithm of hydraulic conductivity, Y , a...