(+961) 1 421 000 ext sahar.ismail1@usj.edu.lb
Highest degree : PHD in Civil Engineering - Seismic Soil Structure Interaction of Midrise Structures - Saint Joseph University of Beirut (USJ)
Degrees | University | Country | Year |
---|---|---|---|
Seismic Soil Structure Interaction of Midrise Structures | Saint Joseph University of Beirut | Lebanon | 2021 |
Master of Engineering | American University of Beirut (AUB) | Lebanon | 2016 |
Master of Science | Hariri Canadian University | Liban | 2014 |
Bachelor of Science | Hariri Canadian University | Liban | 2012 |
Engineering and Technology, Sciences
1-Sahar Ismail, Wassim Raphael, Emmanuel Durand, Fouad Kaddah Fadi Geara. Analysis of the structural response of Beirut port concrete silos under blast loading. Archives of Civil Engineering, 2021. doi: 10.24425/ace.2021.138074. 2-Sahar Ismail, Wassim Raphael Emmanuel Durand. Monitoring the Beirut Port Silos’ Structural Heath Response Few Months After Blast Loading Using 3D Laser Scan. Jordan Journal of Civil Engineering, 2021. 3-Sahar Ismail, Wassim Raphael and Emmanuel Durand. Case Study of the Beirut Port Explosion Using 3D Laser Scan and Nonlinear Finite Element Model. Research on Engineering Structures and Materials, 2021. doi: 10.17515/resm2021.286st0428. 4- Sahar Ismail, Salah Sadek, Shadi Najjar and Mounir Mabsout. Numerical Finite Element Modelling of Soil Resistance Against Upheaval Buckling of Buried Submarine Pipelines. Applied Ocean Research, 2021. doi: 10.1016/j.apor.2020.102478. 5- Sahar Ismail, Fouad Kaddah and Wassim Raphael. Assessing the Dynamic Behaviour of Midrise Frame Structures Sitting on Silty Sandy Soil. The Open Civil Engineering Journal, 2020. doi: 10.2174/1874149502014010262. Sahar Ismail, Fouad Kaddah and Wassim Raphael. Seismic Soil Structure Interaction Response of Midrise Concrete Structures on Silty Sandy Soil. Jordan Journal of Civil Engineering, 2020. Sahar Ismail, Salah Sadek, and Shadi Najjar. Nonlinear Finite Element Analysis of Upheaval Buckling of Buried Offshore Pipelines in Medium Dense Sand with Fines. Innovative Infrastructure Solution, 2018. doi: 10.1007/s41062-018-0131-x.