Abdel-Jaber, Mu’tasim S | Structural Rehabilitation | Research Excellence in Civil and Environmental Engineering Award

Dr. Abdel-Jaber, Mu'tasim S | Structural Rehabilitation | Research Excellence in Civil and Environmental Engineering Award

Former Dean | University of Jordan | Jordan

Dr. Abdel-Jaber, Mu'tasim S. is a distinguished researcher in structural and materials engineering, with a strong focus on reinforced concrete behavior, advanced composite materials, and sustainable construction systems. His research contributions emphasize experimental and numerical investigations of reinforced concrete elements under extreme conditions, including elevated temperatures, impact loading, and structural rehabilitation using FRP-based strengthening techniques. He has made notable advancements in the use of basalt and carbon fiber composites, lightweight concrete systems, and nano-modified construction materials to enhance structural performance and durability. His work also integrates artificial intelligence and deep learning models for predicting mechanical properties and optimizing construction materials and systems. With extensive experience in funded research projects and international collaborations, his scholarly output has been widely published in high-impact journals, contributing significantly to the development of resilient, sustainable, and innovative civil engineering solutions.

Citation Metrics (Scopus)

1000

750

500

250

0

Citations
997

Documents
90

h-index
20

View Scopus Profile View Google Scholar Profile

TOP 5 Featured Publications


Experimental Investigation of Reinforced Concrete Beams with Spiral Reinforcement in Shear

– Construction and Building Materials (Elsevier), 2016 · Cited by 63

A Theoretical and Experimental Investigation of Pallet Rack Structures Under Sway

– Journal of Constructional Steel Research, 2006 · Cited by 57

Javad Mokari – Concrete Design and Retrofit – Best Researcher Award

Javad Mokari | Concrete Design and Retrofit | Best Researcher Award

Civil Engineering | Urmia University of Technology | Iran

Javad Mokari Rahmdel has developed a strong research career in civil and earthquake engineering, focusing on seismic performance evaluation, rehabilitation, and structural control. His work emphasizes the resilience of reinforced concrete and steel structures, retrofitting techniques, and advanced materials such as carbon fiber-reinforced polymers and shape memory alloys. Publications demonstrate his expertise in both experimental and numerical approaches, addressing challenges like confinement, retrofitting, and dynamic response of structures under seismic loads. He has contributed to seismic rehabilitation strategies through analytical modeling, innovative jacketing systems, and performance-based assessment of structures. Javad Mokari Rahmdel has extended his research to geotechnical aspects, structural dynamics, and seismic hazard mitigation, presenting findings at national and international conferences. His authored books on steel and concrete construction monitoring showcase his ability to link theoretical concepts with practical engineering applications. He has supervised numerous postgraduate theses and participated in multiple funded research projects, reinforcing his commitment to advancing earthquake-resistant design. His teaching portfolio, covering advanced mathematics, elasticity, structural stability, reinforced concrete design, and hazard analysis, highlights his role in shaping future engineers. In addition, his professional activities include leadership positions in academic and technical committees, active membership in engineering associations, and delivering specialized workshops and lectures on seismic safety. His recent collaborations explore high-strength materials, nonlinear modeling, and innovative retrofitting strategies to address modern challenges in structural engineering. Through multidisciplinary engagement and consistent scholarly output, Javad Mokari Rahmdel has built a comprehensive research profile that contributes significantly to seismic risk reduction, resilient infrastructure design, and sustainable urban development, establishing him as a recognized academic and practitioner in earthquake engineering and structural mechanics.

Profile: Scopus | Google Scholar
Publications: