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Multi-directional modeling for prediction of fabric anisotropy in sand liquefaction
AbstractAnisotropy in the onset of liquefaction and post liquefaction under cyclic loading condition causes the change in response behavior of the soil. The proposed model operates within the integration of sliding/opening/closing framework of 17 predefined planes as local deformation. This leads to the use of better stress/strain multilaminate histories with many directional effects on soil behavior specifically internal mechanism during pre and post-liquefaction. The ability of multilaminate model for fabric anisotropy has been proven by comparison with the experimental results under drain and undrained conditions and monotonic and cyclic loading. The effects of induced anisotropy was also investigated.
Multi-directional modeling for prediction of fabric anisotropy in sand liquefaction
AbstractAnisotropy in the onset of liquefaction and post liquefaction under cyclic loading condition causes the change in response behavior of the soil. The proposed model operates within the integration of sliding/opening/closing framework of 17 predefined planes as local deformation. This leads to the use of better stress/strain multilaminate histories with many directional effects on soil behavior specifically internal mechanism during pre and post-liquefaction. The ability of multilaminate model for fabric anisotropy has been proven by comparison with the experimental results under drain and undrained conditions and monotonic and cyclic loading. The effects of induced anisotropy was also investigated.
Multi-directional modeling for prediction of fabric anisotropy in sand liquefaction
Dashti, Hadi (author) / Sadrnejad, Seyed Amirodin (author) / Ganjian, Navid (author)
Computers and Geotechnics ; 92 ; 156-168
2017-08-03
13 pages
Article (Journal)
Electronic Resource
English
Multi-directional modeling for prediction of fabric anisotropy in sand liquefaction
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