AbstractThe paper presents a synthesis of past and recently acquired laboratory test results on granular soils using wave propagation techniques at very small strain amplitudes. Resonant column tests on uniform to well-graded coarse sands and gravels of angular and low sphericity grains were analyzed. Empirical-type equations were developed for the prediction of the elastic modulus and material damping at small strains considering the effects of the grading characteristics, the isotropic effective stress and the void ratio. The G0–p' relationship, expressed through exponent nG, was affected by the sample preparation method. For the narrow range in relatively low pressures adopted in the study, it was observed that nG decreased slightly with...
Dynamic properties of soils (shear stiffness and damping ratio) are critical for the design of struc...
textThe study of the dynamic properties of two specific kinds of granular soils is performed using t...
The variation of the Dynamic Shear Modulus, G, and Damping Ratio, D, in a coarse grained alluvial so...
The paper presents a synthesis of past and recently acquired laboratory test results on granular soi...
Shear modulus (G), Young’s modulus (E) and damping ratio (D) are key properties of soils which play ...
The prediction of ground response against wave propagation is essential for construction materials a...
This paper presents an experimental investigation of the concept of effective density for the propag...
Elastic properties of a compacted silty sand were measured in a precision triaxial cell at the École...
Dynamic properties of soil, including modulus and damping, play essential roles in evaluating the r...
Resilient modulus, shear strength, dielectric permittivity, and shear and compressional wave speed v...
textA two-part study was undertaken to evaluate the dynamic properties of nonplastic sandy and grav...
The stiffness of soil is an important parameter that has implications on soil-structure interaction,...
Various experimental studies have shown that soil micro-structure strongly influences the small stra...
Dynamic measurements of very small strain stiffness (c - 0.001% and less) were carried out both in t...
AbstractThis article discus about the small strain shear modulus Gmax and the shear wave velocity vs...
Dynamic properties of soils (shear stiffness and damping ratio) are critical for the design of struc...
textThe study of the dynamic properties of two specific kinds of granular soils is performed using t...
The variation of the Dynamic Shear Modulus, G, and Damping Ratio, D, in a coarse grained alluvial so...
The paper presents a synthesis of past and recently acquired laboratory test results on granular soi...
Shear modulus (G), Young’s modulus (E) and damping ratio (D) are key properties of soils which play ...
The prediction of ground response against wave propagation is essential for construction materials a...
This paper presents an experimental investigation of the concept of effective density for the propag...
Elastic properties of a compacted silty sand were measured in a precision triaxial cell at the École...
Dynamic properties of soil, including modulus and damping, play essential roles in evaluating the r...
Resilient modulus, shear strength, dielectric permittivity, and shear and compressional wave speed v...
textA two-part study was undertaken to evaluate the dynamic properties of nonplastic sandy and grav...
The stiffness of soil is an important parameter that has implications on soil-structure interaction,...
Various experimental studies have shown that soil micro-structure strongly influences the small stra...
Dynamic measurements of very small strain stiffness (c - 0.001% and less) were carried out both in t...
AbstractThis article discus about the small strain shear modulus Gmax and the shear wave velocity vs...
Dynamic properties of soils (shear stiffness and damping ratio) are critical for the design of struc...
textThe study of the dynamic properties of two specific kinds of granular soils is performed using t...
The variation of the Dynamic Shear Modulus, G, and Damping Ratio, D, in a coarse grained alluvial so...