Fully explicit analytical solutions are developed for one-dimensional large strain consolidation in both thick and thin soil layers. Numerical examples are given and comparisons are made with the classical small strain theory. It is shown that, unlike the results in classical small strain theory, the average degree of consolidation defined by stress (i.e. Up) and that defined by strain (i.e. Us) in large strain theory are different. The magnitude of settlement predicted by large strain theory is found to be smaller while both the development of settlement and the dissipation of excess pore water pressure (as shown by Us and Up) are found to be faster than in small strain consolidation in the cases studied. Another interesting observation is...
Terzaghi\u27s solution to the one dimensional consolidation theory (1925) represents an engineering ...
Classical consolidation theory ignores the influence of soil liquid phase acceleration. This paper c...
The vacuum preloading method effectively strengthens soft soil foundations with vertical drainage, w...
The problem of large strain consolidation in soils is investigated by analysis and experiment. A mat...
Based on the axisymmetric large-strain consolidation (ALSC) model with the void ratio as the variabl...
Structured soft clays are widely distributed in the coastal regions of China. The characteristics of...
This thesis is concerned with large strain soil consolidation and a large portion of the work is dev...
The paper concerns the influence of time and strain-rate effects on the clays in one-dimensional con...
Analytical solutions are presented for linear finite-strain one-dimensional consolidation of initial...
Numerical solutions of linear finite-strain one-dimensional consolidation of both initially unconsol...
In this study, one-dimensional consolidation of fine-grained soils is considered. By taking into acc...
This research investigates, experimentally and numerically, the three main factors that differentiat...
Abstract: In this work, semi-analytical methods were used to solve the problem of 1-D consolidatio...
Consolidation of sensitive clay layers, which have significant compressibility at different stress s...
Two methods to account for strain rate dependence of clay behavior in computing settlement due to co...
Terzaghi\u27s solution to the one dimensional consolidation theory (1925) represents an engineering ...
Classical consolidation theory ignores the influence of soil liquid phase acceleration. This paper c...
The vacuum preloading method effectively strengthens soft soil foundations with vertical drainage, w...
The problem of large strain consolidation in soils is investigated by analysis and experiment. A mat...
Based on the axisymmetric large-strain consolidation (ALSC) model with the void ratio as the variabl...
Structured soft clays are widely distributed in the coastal regions of China. The characteristics of...
This thesis is concerned with large strain soil consolidation and a large portion of the work is dev...
The paper concerns the influence of time and strain-rate effects on the clays in one-dimensional con...
Analytical solutions are presented for linear finite-strain one-dimensional consolidation of initial...
Numerical solutions of linear finite-strain one-dimensional consolidation of both initially unconsol...
In this study, one-dimensional consolidation of fine-grained soils is considered. By taking into acc...
This research investigates, experimentally and numerically, the three main factors that differentiat...
Abstract: In this work, semi-analytical methods were used to solve the problem of 1-D consolidatio...
Consolidation of sensitive clay layers, which have significant compressibility at different stress s...
Two methods to account for strain rate dependence of clay behavior in computing settlement due to co...
Terzaghi\u27s solution to the one dimensional consolidation theory (1925) represents an engineering ...
Classical consolidation theory ignores the influence of soil liquid phase acceleration. This paper c...
The vacuum preloading method effectively strengthens soft soil foundations with vertical drainage, w...