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Mohammad Hassan Baziar
Mohammad Hassan Baziar
Professor, School of Civil Engineering, Iran University of Science and Technology
E-mail confirmado em iust.ac.ir
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Effect of fines content on steady-state strength of mixed and layered samples of a sand
SA Naeini, MH Baziar
Soil dynamics and earthquake engineering 24 (3), 181-187, 2004
2952004
Assessment of liquefaction triggering using strain energy concept and ANN model: capacity energy
MH Baziar, Y Jafarian
Soil Dynamics and Earthquake Engineering 27 (12), 1056-1072, 2007
1492007
Residual strength and large-deformation potential of loose silty sands
MH Baziar, R Dobry
Journal of geotechnical engineering 121 (12), 896-906, 1995
1481995
Evaluation of lateral spreading using artificial neural networks
MH Baziar, A Ghorbani
Soil Dynamics and Earthquake Engineering 25 (1), 1-9, 2005
1282005
Seismic ground motion amplification pattern induced by a subway tunnel: shaking table testing and numerical simulation
MR Moghadam, MH Baziar
Soil Dynamics and Earthquake Engineering 83, 81-97, 2016
1252016
Strain energy based evaluation of liquefaction and residual pore water pressure in sands using cyclic torsional shear experiments
Y Jafarian, I Towhata, MH Baziar, A Noorzad, A Bahmanpour
Soil Dynamics and Earthquake Engineering 35, 13-28, 2012
1242012
Centrifuge modeling of interaction between reverse faulting and tunnel
MH Baziar, A Nabizadeh, CJ Lee, WY Hung
Soil Dynamics and Earthquake Engineering 65, 151-164, 2014
1172014
Effect of underground tunnel on the ground surface acceleration
MH Baziar, MR Moghadam, DS Kim, YW Choo
Tunnelling and Underground Space Technology 44, 10-22, 2014
1092014
Evaluation of underground tunnel response to reverse fault rupture using numerical approach
MH Baziar, A Nabizadeh, R Mehrabi, CJ Lee, WY Hung
Soil Dynamics and Earthquake Engineering 83, 1-17, 2016
782016
Evaluation of liquefaction potential using neural-networks and CPT results
MH Baziar, N Nilipour
Soil Dynamics and Earthquake Engineering 23 (7), 631-636, 2003
752003
Assessment of silty sand liquefaction potential using hollow torsional tests—an energy approach
MH Baziar, H Sharafi
Soil Dynamics and Earthquake Engineering 31 (7), 857-865, 2011
732011
Prediction of strain energy-based liquefaction resistance of sand–silt mixtures: an evolutionary approach
MH Baziar, Y Jafarian, H Shahnazari, V Movahed, MA Tutunchian
Computers & Geosciences 37 (11), 1883-1893, 2011
722011
Small-scale model test and three-dimensional analysis of pile-raft foundation on medium-dense sand
MH Baziar, A Ghorbani, R Katzenbach
International Journal of Civil Engineering 7 (3), 170-175, 2009
632009
A laboratory study on the pore pressure generation model for Firouzkooh silty sands using hollow torsional test
MH Baziar, H Shahnazari, H Sharafi
International Journal of Civil Engineering 9 (2), 126-134, 2011
612011
Engineering evaluation of permanent ground deformations due to seismically-induced liquefaction.
MH Baziar
601992
Application of nanomaterial to stabilize a weak soil
SGS Alireza, MS Mohammad, BM Hasan
Missouri University of Science and Technology, 2013
582013
Empirical predictive model for the vmax/amax ratio of strong ground motions using genetic programming
Y Jafarian, E Kermani, MH Baziar
Computers & geosciences 36 (12), 1523-1531, 2010
482010
3D dynamic finite element analyses and 1 g shaking table tests on seismic performance of connected and nonconnected piled raft foundations
AS Azizkandi, MH Baziar, AF Yeznabad
KSCE Journal of Civil Engineering 22, 1750-1762, 2018
462018
Centrifuge modeling of non-connected piled raft system
H Rasouli, AS Azizkandi, MH Baziar, M Modarresi, H Shahnazari
International Journal of Civil Engineering 13 (2), 114-123, 2015
462015
Prediction of pile settlement based on cone penetration test results: an ANN approach
MH Baziar, A Saeedi Azizkandi, A Kashkooli
KSCE Journal of Civil Engineering 19, 98-106, 2015
422015
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Artigos 1–20