Dr. Hossein Agha Beigi is a structural and earthquake engineer with over 15 years of experience specializing in seismic resilience, structural analysis, and the development of innovative solutions for critical infrastructure. Currently serving as a Visiting Researcher at the University of Southampton, he leads the development of DISC technology, a bio-inspired structural system designed to enhance seismic resilience by integrating experimental testing and numerical modelling. His expertise bridges the gap between fundamental academic research and practical, scalable engineering applications for the built environment.
In tandem with his academic research, Dr. Agha Beigi serves as a Structural Engineer Scientist at Kinectrics. In this role, he assesses seismic gaps in power plants, evaluates major refurbishment projects that extend station operational life by up to 30 years, and designs complex structures compliant with rigorous CSA standards and building codes. He is deeply committed to driving sustainable and resilient infrastructure solutions that directly address modern challenges in construction and seismic safety.
PhD in Civil Engineering, University of Toronto, Canada (2012 – 2013).
PhD in Earthquake Engineering, Istituto Universitario di Studi Superiori (IUSS), Pavia, Italy (2009 – 2013).
Thesis: Controlled Soft Storey Mechanism as a Seismic Protection System.
MSc in Civil Engineering (Earthquake Engineering), Science and Research Branch of Azad University, Iran (2005 – 2007).
BSc in Civil Engineering, Khajeh Nasir Toosi University of Technology, Iran (1996 – 2002).
Beigi, H. A., Ahmadi, E., & Kashani, M. M. (2026). Seismic performance of post-tensioned segmental precast concrete shear walls integrated with pinned steel frames. Soil Dynamics and Earthquake Engineering, 210, 110548.
Cao, H., Minta, K., Beigi, H. A., Georgantzia, E., & Kashani, M. M. (2026). Experimental investigation of nonlinear stress-strain behaviour of various elastomeric materials under cyclic loading. Construction and Building Materials, 510, 145234.
Pakpour, F. (2021). Development of low-cost seismic isolation platform (SIP) for mass implementation in developing countries. University of Toronto (Contributions by H. Agha Beigi).
Salmon, J., Agha Beigi, H., & Christopoulos, C. (2019). Full-scale tests of gapped-inclined bracing system: seismic retrofit for soft-story buildings. Journal of Structural Engineering, 145(10), 04019095.
Beigi, H. A., Christopoulos, C., & Sullivan, T. J. (2019). System for mitigating the effects of a seismic event. US Patent 10,400,469.