Verifying liquefaction remediation beneath an earth dam using SPT and CPT based methods

This paper presents a case study of liquefaction potential assessment for the foundation of an earth dam in Tunisia. An emphasis was made on the exploration of geotechnical conditions and the interpretation of field tests (SPT and CPT) and the results were collected before and after soil densificati...

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Veröffentlicht in:Soil dynamics and earthquake engineering (1984) 2013-10, Vol.53, p.130-144
Hauptverfasser: Guettaya, Ikram, El Ouni, Mohamed Ridha, Moss, Robb Eric S.
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper presents a case study of liquefaction potential assessment for the foundation of an earth dam in Tunisia. An emphasis was made on the exploration of geotechnical conditions and the interpretation of field tests (SPT and CPT) and the results were collected before and after soil densification using the vibrocompaction technique. The assessment of soil liquefaction triggering was made using deterministic and probabilistic simplified procedures. The results indicate that before vibrocompaction the studied area was prone to the liquefaction hazard. However, after vibrocompaction a significant improvement of the soil resistance reduced the liquefaction potential of the sandy foundation soil. The SPT resistance values increased on average from 12 to 25 blow counts/0.3m, and the CPT resistance increased on average from 8MPa to 14MPa. Before vibrocompaction, the factor of safety (FS) against liquefaction fell below 1.0, which means that the soil is susceptible for liquefaction. After vibrocompaction the values of FS exceed the unit which justified the liquefaction mitigation efforts in dam foundation. •This paper presents a case study of liquefaction potential assessment for the foundation.•Assessment of liquefaction was made using deterministic and probabilistic simplified procedures.•After vibrocompaction, an improvement of the soil resistance reduces the liquefaction potential.
ISSN:0267-7261
1879-341X
DOI:10.1016/j.soildyn.2013.06.009