Using the theory of homogenization we derive macroscopic models for describing flow of gas at low pressure in dual-porosity media. The case of a fractured porous medium is under consideration for the study, and the existence of a representative elementary volume that consists of open connected fractures surrounded by porous matrix blocks is assumed. The local flow is governed by either Klinkenberg's law or Knudsen's diffusion law in the matrix while either a non-slip flow or a slip flow occurs in the fractures. Six new models are derived by homogenization, which are compared to the three models which were obtained for Darcy's regime in an earlier work. Each of these nine models is characterized by its macroscopic flow regime and by the type...
Tight gas reservoirs are characterized by single-phase (gas) or two-phase (gas and liquid) flow in e...
Natural and anthropogenic fractured aquifers and reservoirs are dual porosity matrix-fracture system...
A model for two-phase, incompressible, immiscible fluid flow in a highly fractured porous medium is ...
Using the theory of homogenization we derive macroscopic models for describing flow of gas at low pr...
International audienceThis work is concerned with modelling the seepage of gas through a rigid fract...
International audienceThis paper deals with the seepage of a fluid through a fractured porous medium...
International audienceThe highly compressible fl uid fl ow through a three-scales rigid porous mediu...
Abstract. A general form of the double porosity model of single phase flow in a naturally fractured ...
. We derive a dual-porosity model of multidimensional, multicomponent, three-phase flow in naturally...
International audienceThe highly compressible fl uid fl ow through a three-scales rigid porous mediu...
Three models are considered for single component, single phase flow in naturally fractured porous me...
International audienceWe investigate the macroscopic quasi-static description of a porous rigid medi...
We consider the problem of modeling flow through naturally fractured porous media. In this type of m...
International audienceTwo-phase flow in fractured porous media is investigated by means of a direct ...
We consider two-phase flow in a heterogeneous porous medium with highly permeable fractures and low ...
Tight gas reservoirs are characterized by single-phase (gas) or two-phase (gas and liquid) flow in e...
Natural and anthropogenic fractured aquifers and reservoirs are dual porosity matrix-fracture system...
A model for two-phase, incompressible, immiscible fluid flow in a highly fractured porous medium is ...
Using the theory of homogenization we derive macroscopic models for describing flow of gas at low pr...
International audienceThis work is concerned with modelling the seepage of gas through a rigid fract...
International audienceThis paper deals with the seepage of a fluid through a fractured porous medium...
International audienceThe highly compressible fl uid fl ow through a three-scales rigid porous mediu...
Abstract. A general form of the double porosity model of single phase flow in a naturally fractured ...
. We derive a dual-porosity model of multidimensional, multicomponent, three-phase flow in naturally...
International audienceThe highly compressible fl uid fl ow through a three-scales rigid porous mediu...
Three models are considered for single component, single phase flow in naturally fractured porous me...
International audienceWe investigate the macroscopic quasi-static description of a porous rigid medi...
We consider the problem of modeling flow through naturally fractured porous media. In this type of m...
International audienceTwo-phase flow in fractured porous media is investigated by means of a direct ...
We consider two-phase flow in a heterogeneous porous medium with highly permeable fractures and low ...
Tight gas reservoirs are characterized by single-phase (gas) or two-phase (gas and liquid) flow in e...
Natural and anthropogenic fractured aquifers and reservoirs are dual porosity matrix-fracture system...
A model for two-phase, incompressible, immiscible fluid flow in a highly fractured porous medium is ...