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Documents publiés par "Shahbazi, Alireza"

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Nombre de documents : 9.

Shahbazi Alireza, Saeidi Ali, Chesnaux Romain et Rouleau Alain. (2024). An index based on fracture length and aperture to predict groundwater inflow rates in tunnels excavated in fractured-rock. Transportation Geotechnics, 45, e101217.

Koulibaly Aboubacar Sidiki, Shahbazi Alireza, Saeidi Ali, Rouleau Alain, Quirion Marco et Chesnaux Romain. (2023). Advancements in rock block volume calculation by analytical method for geological engineering applications. Environmental Earth Sciences, 82, e344.

Saeidi Ali, Cloutier Come, Kamalibandpey Abbas et Shahbazi Alireza. (2022). Evaluation of the Effect of Geomechanical Parameters and In Situ Stress on Tunnel Response Using Equivalent Mohr-Coulomb and Generalized Hoek-Brown Criteria. Geosciences, 12, (7), e262.

Shahbazi Alireza. (2022). Using analytical and numerical methods to assess the influence of the structural parameters of fractured-rock on controlling water flow in underground excavations. Thèse de doctorat, Université du Québec à Chicoutimi.

Shahbazi Alireza, Saeidi Ali, Chesnaux Romain et Rouleau Alain. (2021). The Specific Length of an Underground Tunnel and the Effects of Rock Block Characteristics on the Inflow Rate. Geosciences, 11, (12), p. 517.

Shahbazi Alireza, Chesnaux Romain et Saeidi Ali. (2021). A new combined analytical-numerical method for evaluating the inflow rate into a tunnel excavated in a fractured rock mass. Engineering Geology, 283, e106003.

Shahbazi Alireza, Chesnaux Romain et Saeidi Ali. (2021). A new combined analytical-numerical method for evaluating the inflow rate into a tunnel excavated in a fractured rock mass. Engineering Geology, 283, e106003.

Shahbazi Alireza, Saeidi Ali et Chesnaux Romain. (2020). Numerical modeling for determining the local vertical hydraulic gradient at the wall of a tunnel. Dans : GeoVirtual 2020 - 73rd annual conference of the Canadian Geotechnical Society (CGS) , September 14-16, 2020

Shahbazi Alireza, Saeidi Ali et Chesnaux Romain. (2020). A review of existing methods used to evaluate the hydraulic conductivity of a fractured rock mass. Engineering Geology, 265, p. 105438.

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