Khaled Sennah | Structural Engineering | Best Researcher Award
Prof Dr. Khaled Sennah, Toronto Metropolitan University, Canada.
Publication profile
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Education and Experience
Β Ph.D. in Civil EngineeringΒ from the University of Windsor, Canada (1998)
Β M.Sc. in Civil EngineeringΒ from Alexandria University, Egypt (1990)
Β B.Sc. in Civil EngineeringΒ from Alexandria University, Egypt (1985, Distinction)
Β Professor, Toronto Metropolitan University (2007βPresent)
Β Chair, Department of Civil Engineering, Ryerson University (2011β2021)
Β Adjunct Professor, College of Civil Engineering, Fuzhou University, China (2014βPresent)
Β Coordinator, Structures and Strength of Materials Laboratories, Ryerson University (2000βPresent)
Β Structural Designer, EKR Consulting Civil Engineers, Egypt (1985β1993)
Suitability For The Award
Dr. Khaled Sennah is indeed a strong candidate for the Best Researcher Award, given his exceptional contributions in civil and structural engineering over his extensive career. His research, particularly in bridge engineering, has led to advancements in load distribution, structural resilience, and design innovation.
Professional DevelopmentΒ
Awards and HonorsΒ
Publications
- Shear Strengthening of RC Beams Incorporating Post-Tensioned Bars and Engineered Cementitious Composite Reinforced with Palm FrondsΒ (2024) – Cited by: [DOI: 10.3390/buildings14103277]Β
- Fatigue and Ultimate Strength Evaluation of GFRP-Reinforced, Laterally-Restrained, Full-Depth Precast Deck Panels with Developed UHPFRC-Filled Transverse Closure StripsΒ (2024) – Cited by: [DOI: 10.3390/app14198806]Β
- Influence of shear strengthening of reinforced normal concrete beams incorporating sustainable materialsΒ (2024) – Cited by: [DOI: 10.1002/suco.202300556]Β
- Compressive loading of structural insulated panels and conventional stud walls: a studyΒ (2023) – Cited by: [DOI: 10.1680/jstbu.21.00125]Β
- Experimental and numerical investigations of the effectiveness of engineered cementitious composites and stainless steel plates in shear strengthening of reinforced concrete beamsΒ (2023) – Cited by: [DOI: 10.1002/suco.202200226]Β
- Push-out test of hybrid shear connector in steel-precast UHPC composite slabΒ (2023) – Cited by: [DOI: 10.1016/j.istruc.2023.02.113]Β
- Computational simulation of nonlinear inelastic behavior of circular concrete-filled stainless-steel tubular short columns incorporating confinement effectsΒ (2023) – Cited by: [DOI: 10.1016/j.engstruct.2022.115183]Β