AZIZI, ARASH
AZIZI, ARASH
Dipartimento di Ingegneria Strutturale, Edile e Geotecnica
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A microstructure-based elastoplastic model to describe the behaviour of a compacted clayey silt in isotropic and triaxial compression
2020 Musso, Guido; Azizi, Arash; Jommi, Cristina
Effects of repeated hydraulic loads on microstructure and hydraulic behaviour of a compacted clayey silt
2020 Azizi, Arash; Musso, Guido; Jommi, Cristina
A water retention model accounting for the hysteresis induced by hydraulic and mechanical wetting-drying cycles
2017 Azizi, Arash; Jommi, Cristina; Musso, Guido
Citazione | Data di pubblicazione | Autori | File |
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A microstructure-based elastoplastic model to describe the behaviour of a compacted clayey silt in isotropic and triaxial compression / Musso, Guido; Azizi, Arash; Jommi, Cristina. - In: CANADIAN GEOTECHNICAL JOURNAL. - ISSN 0008-3674. - STAMPA. - 57:7(2020), pp. 1025-1043. [10.1139/cgj-2019-0176] | 1-gen-2020 | Musso, GuidoAzizi, Arash + | A microstructure-based elastoplastic model to describe the behaviour of a compacted clayey silt in isotropic and triaxial compression Musso Azizi and Jommi 2019.pdf; GM_AA_CJ_ 2020CGJ_elastic plastic description.pdf |
Effects of repeated hydraulic loads on microstructure and hydraulic behaviour of a compacted clayey silt / Azizi, Arash; Musso, Guido; Jommi, Cristina. - In: CANADIAN GEOTECHNICAL JOURNAL. - ISSN 0008-3674. - STAMPA. - 57:(2020), pp. 100-114. [10.1139/cgj-2018-0505] | 1-gen-2020 | Azizi, ArashMusso, Guido + | revised manuscript.pdf; AA_GM_CJ_2019_Can Geot J_Repeated hydraulic loads hydraulic behaviour of a compacted clayey silt.pdf |
A water retention model accounting for the hysteresis induced by hydraulic and mechanical wetting-drying cycles / Azizi, Arash; Jommi, Cristina; Musso, Guido. - In: COMPUTERS AND GEOTECHNICS. - ISSN 0266-352X. - STAMPA. - 87:(2017), pp. 86-98. [10.1016/j.compgeo.2017.02.003] | 1-gen-2017 | AZIZI, ARASHMUSSO, GUIDO + | COGE-D-16-00577R3.pdf; AA_CJ_GM_A water retention model accounting for the hysteresis induced by hydraulic and mechanical wetting-drying cycles_C&G_2016.pdf |