Title of article :
Effects of longitudinal variability of soil on a continuous spread footing
Author/Authors :
Denis، نويسنده , , Alain and Elachachi، نويسنده , , Sidi Mohammed and Niandou، نويسنده , , Halidou، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
12
From page :
179
To page :
190
Abstract :
A simple model, describing the soil–foundation interaction for continuous wall footing, and which takes longitudinal variations in soilʹs properties into account, is presented in this paper. This model has been developed using a finite element representation in which a 1D structure (continuous spread footing) rests on a spatially variable soil, described by Winkler-type springs, characterized by the subgrade reaction coefficient. hnical (pressuremeter tests) and geophysical (VLF-R: Very Low Frequency-Resistivity mode) surveys, performed over a selected study area resting on an alluvial terrace, were used to provide information on the soilʹs variability, and to reveal the presence of clayey soil. Three kinds of natural variability are considered: natural soil variations, rapid variations in the soilʹs properties, and shrinkage of clayey soil. tionship between the coefficient of subgrade reaction and the resistivity was observed. The spatial variability of the coefficient of subgrade reaction was analyzed using geostatistics, and then used in the model to derive differential settlements and bending moment values of a continuous spread footing, which cannot be predicted if the soil is assumed to be homogeneous, or if shrinkage under the continuous wall footing is not taken into account. Results show that, as is often the case in practice, when the longitudinal soil variability is not taken into account, the design may be unsafe.
Keywords :
Spatial variability , Alluvial deposits , soil–structure interaction , Clayey soil , Shrinkage , resistivity
Journal title :
Engineering Geology
Serial Year :
2011
Journal title :
Engineering Geology
Record number :
2348227
Link To Document :
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