The purpose of the study is to investigate the influence of porosity and void size on effective elastic geotechnical engineering properties with a 3D model of random fields and finite element. The random field theory is used to generate models of geomaterials containing spatially random voids with controlled porosity and void size. A “tied freedom” analysis is developed to evaluate the effective Young’s modulus and Poisson’s ratio in an ideal block material of finite elements. To deliver a mean and standard deviation of the elastic parameters, this approach uses Monte-Carlo simulations and finite elements, where each simulation leads to an effective value of the property under investigation. The results are extended to investigate an influe...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
This study utilises a third-order expansion of the strain energy density function and finite strain ...
AbstractThe purpose of the study is to investigate the influence of porosity and void size on effect...
The paper describes the use of random fields and finite elements to assess the influence of porosity...
AbstractThe paper describes the use of random fields and finite elements to assess the influence of ...
The purpose of the study is to investigate the influence of porosity and void size on equivalent geo...
The homogenized stiffness of geomaterials that are highly variable at the micro-scale has long been ...
International audienceThis work aims to introduce a methodology for the determination of the effecti...
A finite-element method is used to study the elastic properties of random three-dimensional porous m...
A discrete model for the estimation of the effect of random voids on the structural properties of a ...
The finite element method is used to study the influence of porosity and pore shape on the elastic p...
The mechanical properties of soils and rocks can be highly variable, and there has recently been a g...
AbstractStatistical modeling is used to correlate geometric parameters of pores with their contribut...
The existence of pores is a very common feature of nature and of human life, but the existence of po...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
This study utilises a third-order expansion of the strain energy density function and finite strain ...
AbstractThe purpose of the study is to investigate the influence of porosity and void size on effect...
The paper describes the use of random fields and finite elements to assess the influence of porosity...
AbstractThe paper describes the use of random fields and finite elements to assess the influence of ...
The purpose of the study is to investigate the influence of porosity and void size on equivalent geo...
The homogenized stiffness of geomaterials that are highly variable at the micro-scale has long been ...
International audienceThis work aims to introduce a methodology for the determination of the effecti...
A finite-element method is used to study the elastic properties of random three-dimensional porous m...
A discrete model for the estimation of the effect of random voids on the structural properties of a ...
The finite element method is used to study the influence of porosity and pore shape on the elastic p...
The mechanical properties of soils and rocks can be highly variable, and there has recently been a g...
AbstractStatistical modeling is used to correlate geometric parameters of pores with their contribut...
The existence of pores is a very common feature of nature and of human life, but the existence of po...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
This study utilises a third-order expansion of the strain energy density function and finite strain ...