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)

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Citations
997

Documents
90

h-index
20

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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

Zhou Ji | FRP reinforced concrete structure | Best Researcher Award

Zhou Ji | FRP Reinforced Concrete Structure | Best Researcher Award

Associate Professor | Nanjing Forestry University | China

Zhou Ji is a dedicated civil engineering researcher specializing in steel–concrete composite structures and marine or offshore concrete systems, with extensive academic and practical expertise in structural performance and durability. As a doctoral researcher at Guangxi University under Professor Zongping Chen, Zhou has contributed significantly to the understanding of mechanical behaviors, bond characteristics, and seismic performance of advanced composite materials. Zhou has led one Guangxi postgraduate education innovation project and participated in six national and provincial-level research programs focusing on areas such as high-temperature damage assessment, corrosion-resistant marine concrete, and long-lifespan transport hub structures. The research has resulted in 9 SCI-indexed papers and 10 EI-indexed papers as the first author, including publications in high-impact journals like Engineering Structures, Construction and Building Materials, and Journal of Composites for Construction-ASCE. Zhou’s studies on CFRP-steel composite bars in coral sea-sand seawater concrete have provided key insights into bond behavior, structural strength, and post-fire performance, contributing to sustainable marine construction. In addition to academic publications, Zhou has secured four national patents and participated in developing a Guangxi provincial standard. Recognition of excellence includes numerous national and provincial scholarships and awards, such as the Liu Huixian Earthquake Engineering Award and multiple National Scholarship distinctions. The research achievements reflect a deep commitment to advancing composite structural technologies that enhance resilience and sustainability in coastal infrastructure. With a strong foundation in both experimental and numerical analysis, Zhou continues to explore innovative materials and design approaches that address environmental challenges in modern civil engineering. 409 Citations, 16 Documents, and an h-index of 11

Chen, Z., Zhou, J., Jing, C., & Tan, Q. (2021). Mechanical behavior of spiral stirrup reinforced concrete filled square steel tubular columns under compression. Engineering Structures, 226, 111377.

Chen, Z., Xu, W., & Zhou, J. (2022). Mechanical performance of marine concrete filled CFRP–aluminum alloy tube columns under axial compression: Experiment and finite element analysis. Engineering Structures, 272, 114993.

Chen, Z., Li, S., Zhou, J., Xu, R., & Dai, S. (2022). Flexural behavior of GFRP bars reinforced seawater sea sand concrete beams exposed to marine environment: Experimental and numerical study. Construction and Building Materials, 349, 128784.

Chen, Z., Pang, Y., Xu, R., Zhou, J., & Xu, W. (2022). Mechanical performance of ocean concrete-filled circular CFRP–steel tube columns under axial compression. Journal of Constructional Steel Research, 198, 107514.

Zhou, J., Chen, Z., Chen, Y., Song, C., Li, J., & Zhong, M. (2022). Torsional behavior of steel reinforced concrete beam with welded studs: Experimental investigation. Journal of Building Engineering, 48, 103879.