© 2016. This paper introduces an analytical solution for the axisymmetric consolidation of unsaturated soils subjected to constant external loading. The analytical procedure employs variables separation and Laplace transformation techniques while capturing the uniform and linear initial excess pore pressure distributions with depth. Excess pore-air and pore-water pressures as functions of time, radial and vertical flows are determined using Laplace transforms, Fourier Bessel and sine series, respectively. In this study, the consolidation behavior, in terms of changes in excess pore-air and pore-water pressures and the average degree of consolidation, are investigated against the air to water permeability ratio. The effects of radial distanc...
This study presents a novel analytical solution for one-dimensional (1-D) consolidation for unsatura...
A consolidating clay layer can be singly or doubly drained. The degree of consolidation is a functio...
This paper introduces an exact analytical solution for governing flow equations for one-dimensional ...
© 2015 John Wiley & Sons, Ltd. This paper discusses the excess pore-air and pore-water pressure diss...
© 2018 John Wiley & Sons, Ltd. This paper proposes closed-form analytical solutions to the axisymmet...
© 2015. This paper introduces an exact analytical solution predicting variations in excess pore-air ...
© 2015 American Society of Civil Engineers. During consolidation, excess pore-air and pore-water pre...
Developing an analytical solution for the consolidation of unsaturated soils remains a challenging t...
This paper explains a simple yet precise analytical solution for the nonlinear governing equations f...
Nonuniform, initial, excess pore-water pressure distributions in the horizontal direction will have ...
Nonuniform, initial, excess pore-water pressure distributions in the horizontal direction will have ...
Nonuniform, initial, excess pore-water pressure distributions in the horizontal direction will have ...
A semianalytical solution to axisymmetric consolidation of a transversely isotropic soil layer resti...
This paper discusses a simple yet precise analytical solution for one-dimensional (1-D) consolidatio...
This paper presents the results of a parametric study investigating the axisymmetric consolidation o...
This study presents a novel analytical solution for one-dimensional (1-D) consolidation for unsatura...
A consolidating clay layer can be singly or doubly drained. The degree of consolidation is a functio...
This paper introduces an exact analytical solution for governing flow equations for one-dimensional ...
© 2015 John Wiley & Sons, Ltd. This paper discusses the excess pore-air and pore-water pressure diss...
© 2018 John Wiley & Sons, Ltd. This paper proposes closed-form analytical solutions to the axisymmet...
© 2015. This paper introduces an exact analytical solution predicting variations in excess pore-air ...
© 2015 American Society of Civil Engineers. During consolidation, excess pore-air and pore-water pre...
Developing an analytical solution for the consolidation of unsaturated soils remains a challenging t...
This paper explains a simple yet precise analytical solution for the nonlinear governing equations f...
Nonuniform, initial, excess pore-water pressure distributions in the horizontal direction will have ...
Nonuniform, initial, excess pore-water pressure distributions in the horizontal direction will have ...
Nonuniform, initial, excess pore-water pressure distributions in the horizontal direction will have ...
A semianalytical solution to axisymmetric consolidation of a transversely isotropic soil layer resti...
This paper discusses a simple yet precise analytical solution for one-dimensional (1-D) consolidatio...
This paper presents the results of a parametric study investigating the axisymmetric consolidation o...
This study presents a novel analytical solution for one-dimensional (1-D) consolidation for unsatura...
A consolidating clay layer can be singly or doubly drained. The degree of consolidation is a functio...
This paper introduces an exact analytical solution for governing flow equations for one-dimensional ...