ARTÍCULO
TITULO

Experimental Investigation on Small-Strain Stiffness of Marine Silty Sand

Qi Wu    
Qingrui Lu    
Qizhou Guo    
Kai Zhao    
Pen Chen and Guoxing Chen    

Resumen

The significance of small-strain stiffness (Gmax) of saturated composite soils are still of great concern in practice, due to the complex influence of fines on soil fabric. This paper presents an experimental investigation conducted through comprehensive bender element tests on Gmax of marine silty sand. Special attention is paid to the influence of initial effective confining pressure (σc0′" role="presentation" style="position: relative;">??'c0sc0' s c 0 ' ), global void ratio (e) and fines content (FC) on Gmax of a marine silty sand. The results indicate that under otherwise similar conditions, Gmax decreases with decreasing e or FC, but decreases with increasing FC. In addition, the reduction rate of Gmax with e increasing is not sensitive to σc0′" role="presentation" style="position: relative;">??'c0sc0' s c 0 ' , but obviously sensitive to changes in FC. The equivalent skeleton void ratio (e*) is introduced as an alternative state index for silty sand with various FC, based on the concept of binary packing material. Remarkably, the Hardin model is modified with the new state index e*, allowing unified characterization of Gmax values for silty sand with various FC, e, and σc0′" role="presentation" style="position: relative;">??'c0sc0' s c 0 ' . Independent test data for different silty sand published in the literature calibrate the applicability of this proposed model.

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