Ayinde Akeem Shola | Physical Oceanography | Young Scientist Award

Dr. Ayinde Akeem Shola | Physical Oceanography | Young Scientist Award

Ocean University of China | China

Dr. Ahmad Hatem Bawagnih is an accomplished researcher in the field of mechanical and materials engineering, specializing in advanced manufacturing, tribology, corrosion studies, and finite element analysis (FEA). With a strong academic foundation and active research involvement, he has contributed to high-impact projects and publications that advance both scientific knowledge and industrial practices. His work is characterized by a deep interest in thermomechanical processes, material behavior under environmental stresses, and the development of wear-resistant composites. Throughout his academic and professional journey, Dr. Bawagnih has collaborated with leading institutions and industry stakeholders such as Saudi Aramco and the Interdisciplinary Research Center for Advanced Materials at KFUPM, where he played an active role in addressing real-world engineering challenges. His scholarly contributions include journal publications, conference proceedings, and book chapters in highly regarded platforms like Polymers, Journal of Advanced Joining Processes, and Springer’s TMS series. Alongside his research, he has excelled in academic teaching and mentoring, serving as a Graduate Assistant at KFUPM, where he guided students in laboratory experiments and engineering workshops. His recognition through scholarships, industry collaborations, and funded research projects underscores his potential to emerge as a global leader in mechanical and materials research.

Professional Profile

Scopus | Google Scholar

Education

Dr. Ahmad Hatem Bawagnih’s academic journey reflects rigorous training, consistent excellence, and specialization in advanced mechanical and materials engineering. He began his studies at Al-Balqaʼ Applied University in Jordan, where he earned his Bachelor of Science in Mechanical Engineering (Production and Machines), graduating with distinction and ranking 3rd in his class. His undergraduate project, focused on welding current effects on the mechanical properties and microstructure of stainless steel, sparked his interest in metallurgy and materials research. Building on this foundation, Dr. Bawagnih pursued his Master of Science in Mechanical Engineering (Materials and Manufacturing) at King Fahd University of Petroleum & Minerals (KFUPM), Dhahran, Saudi Arabia. At KFUPM, a globally ranked university, he immersed himself in specialized coursework, including fracture mechanics, finite element analysis, engineering polymers, and corrosion in petroleum systems. His M.Sc. thesis addressed the tribological characterization of short glass fiber–reinforced epoxy composites, a project with significant industrial relevance for oil well casing protection. His academic work has been complemented by funded research collaborations, such as casing wear studies with Saudi Aramco and friction stir welding projects funded by the Deanship of Scientific Research. This combination of high-level coursework, experimental research, and industrial collaboration defines his strong educational background.

Professional xperience

Dr. Ahmad Hatem Bawagnih’s professional experiences span teaching, research, and industry, reflecting his versatility as both a scholar and practitioner. At KFUPM, he serves as a Graduate Assistant, contributing to undergraduate teaching in materials science, mechanical workshops, and tribology laboratories. In this role, he not only supports course delivery but also mentors students in conducting experiments, interpreting results, and applying engineering concepts to real-world scenarios. His earlier academic role as a Mechanical Engineering Teacher under the Jordanian Ministry of Education allowed him to design and deliver full courses in welding technology, mechanical drawing, and production engineering, while supervising hands-on training sessions. Complementing his academic career, Dr. Bawagnih gained valuable industry experience as a Maintenance Engineer at Al Durra International for Food Industry in Jordan, where he managed maintenance operations, production line modifications, equipment fabrication, and spare parts logistics. This professional diversity equips him with practical insights that enhance his research and teaching effectiveness. His ability to transition seamlessly between academic and industrial environments highlights his adaptability, problem-solving skills, and leadership potential. This balance of roles underlines his capacity to bridge fundamental research, applied engineering, and education, strengthening his contributions to both academia and industry.

Research Interests

Dr. Ahmad Hatem Bawagnih’s research interests are rooted in materials engineering, mechanical characterization, and advanced manufacturing techniques. A central focus of his work lies in tribology, particularly in understanding wear, friction, and lubrication behaviors of composites and coatings under extreme conditions. His master’s thesis explored fiber-reinforced epoxy composites for oil well casing coatings, aligning with pressing industrial challenges in the petroleum sector. He also investigates friction stir welding and processing methods, with an emphasis on crack repair and corrosion resistance of aluminum alloys. In parallel, Dr. Bawagnih is highly engaged in finite element modeling (FEA) for thermomechanical process analysis, using advanced simulation tools to model stresses, fracture toughness, and material deformation under complex loading. His published work extends into surface crack repair, additive manufacturing, and tribological characterization of polymer composites, all of which carry significant implications for industries ranging from aerospace to energy. Looking forward, he intends to expand his research scope toward additive manufacturing and smart materials, with applications in sustainable engineering and high-performance materials development. His multidisciplinary interests ensure that his research remains not only academically relevant but also directly impactful for global industrial advancements.

Research Skills

Dr. Ahmad Hatem Bawagnih possesses a broad and sophisticated set of technical and research skills that strengthen his effectiveness as an academic and professional researcher. He is highly proficient in finite element modeling (FEA), using tools such as ANSYS, ABAQUS, and 3D Flow to simulate fracture, thermal stresses, and process dynamics in manufacturing systems. His expertise in tribological characterization and corrosion testing enables him to experimentally validate material properties under demanding conditions, ensuring that his research bridges theory and practice. He is also skilled in SolidWorks 3D modeling and assembly, supporting his ability to design prototypes, simulate engineering systems, and develop new solutions for materials engineering. Beyond technical simulation and modeling, he demonstrates strong competencies in academic writing, data analysis, and experimental research design, which have contributed to his publications in indexed journals and conference proceedings. His professional background has also sharpened his teaching and mentoring abilities, particularly in laboratory-based instruction. By integrating computational modeling, experimental testing, and pedagogical skills, Dr. Bawagnih demonstrates a unique capacity to contribute across academic, industrial, and educational settings. His skillset is particularly aligned with global demands for advanced manufacturing and materials research, positioning him strongly for future leadership.

Awards & Honors

Dr. Ahmad Hatem Bawagnih has been recognized for his academic excellence, research achievements, and professional contributions through various awards and honors. During his undergraduate studies at Al-Balqaʼ Applied University, he graduated with distinction and secured a fully funded scholarship, underscoring his academic talent and commitment. His success continued at the postgraduate level, where he earned another fully funded scholarship to pursue his Master’s degree at KFUPM, one of the top-ranked universities globally. His scholarly contributions include peer-reviewed publications in Polymers and the Journal of Advanced Joining Processes, along with multiple conference papers and book chapters published in Springer’s TMS proceedings, which stand as professional recognitions of his research quality. Additionally, his appointments as a Graduate Assistant at KFUPM and a Mechanical Engineering Teacher in Jordan demonstrate institutional recognition of his teaching and leadership capabilities. These honors highlight not only his personal dedication but also the trust placed in him by both academic and professional institutions. Collectively, these achievements reinforce his position as a promising researcher who has already earned recognition at both national and international levels. They also reflect his potential to achieve higher distinctions in his future academic career.

Publication Top Notes

  • Sea level variability and modeling in the Gulf of Guinea using supervised machine learning — 2023 — 14 citations

  • The salient issues of coastal hazards and disasters in Nigeria — 2023 — 11 citations

  • Review of machine learning methods for sea level change modeling and prediction — 2024 — 10 citations

  • Sea surface temperature trends and its relationship with precipitation in the Western and Central Equitorial Africa — 2020 — 9 citations

  • Influence of precipitation–runoff on oceanographic parameters in the Gulf of Guinea — 2020 — 1 citation

Conclusion

In conclusion, Dr. Ahmad Hatem Bawagnih is a distinguished young researcher whose academic background, professional experience, and research contributions exemplify excellence in mechanical and materials engineering. His achievements in tribological studies, finite element modeling, and advanced manufacturing demonstrate both technical depth and industrial relevance. His involvement in funded projects with Saudi Aramco and KFUPM’s Interdisciplinary Research Center highlights his ability to integrate academic rigor with applied engineering solutions. Beyond research, his dedication to teaching, mentoring, and industrial practice reflects his holistic contribution to the engineering field. Recognized through scholarships, publications, and teaching appointments, Dr. Bawagnih has proven his commitment to advancing science and technology while nurturing future engineers. His aspirations to expand into additive manufacturing, advanced composites, and global collaborations indicate his forward-looking approach and leadership potential. With his combination of strong academic credentials, practical engineering skills, and scholarly recognition, Dr. Bawagnih is well-positioned to become a global leader in his field. He is not only deserving of the Best Researcher Award but also represents the caliber of researcher capable of shaping the future of mechanical and materials engineering through impactful innovation and dedicated service to society.

Zhe Tian | Ocean Engineering | Best Researcher Award

Assoc. Prof. Dr. Zhe Tian | Ocean Engineering | Best Researcher Award

Head of the Department at Ocean University of China, China

Ph.D. Zhe Tian is an accomplished researcher and associate professor at the College of Engineering, Ocean University of China. His extensive academic career spans multiple years, where he has made significant contributions to marine and offshore engineering, focusing on dynamic analysis, modal parameter estimation, and structural health monitoring. With a strong foundation in both education and hands-on professional experience, his research has been published in numerous respected journals. His work often explores innovative methodologies for improving the safety, performance, and reliability of offshore structures, particularly in the context of offshore wind turbines and floating structures. As a result, Ph.D. Tian has earned recognition within the scientific community and beyond.

Professional Profile

Education

Ph.D. Zhe Tian completed his Ph.D. in Marine Engineering from Wuhan University of Technology between 2011 and 2016. Prior to his Ph.D., he earned his Bachelor’s degree in Structural Engineering from the same institution, where he laid the groundwork for his academic pursuit in the fields of marine structures and engineering. His strong educational background, particularly in marine engineering and structural engineering, has provided him with the expertise to tackle complex challenges in offshore structural dynamics, modeling, and health monitoring systems.

Professional Experience

Ph.D. Zhe Tian has a distinguished professional career, highlighted by his role as an Associate Professor at the College of Engineering, Ocean University of China. His tenure at the university began in 2021, following his time as a lecturer at the same institution from 2017 to 2020. Additionally, he had the opportunity to broaden his academic exposure as a Visiting Scholar at the University of Southampton in the UK, where he contributed to research on ocean engineering from 2014 to 2015. His experience at renowned institutions and his progression in academia have enabled him to develop a deep understanding of offshore engineering and related fields.

Research Interests

Ph.D. Zhe Tian’s research interests are centered around the dynamic analysis of offshore structures, modal parameter estimation, model updating, and structural health monitoring systems. His research aims to advance the understanding of offshore structures’ behavior under various conditions, providing solutions for improved design, safety, and durability. He has a particular focus on offshore wind turbines, floating structures, and offshore jacket platforms. Tian’s work also emphasizes the development of innovative methods, such as ensemble deep learning models, variational mode decomposition, and Grey Wolf Optimizer algorithms, for better performance assessment and maintenance of offshore systems.

Research Skills

Ph.D. Tian possesses a diverse set of research skills in the fields of dynamic structural analysis, computational modeling, and artificial intelligence. His expertise includes applying advanced mathematical techniques to assess the dynamic performance of offshore structures, including offshore wind turbines. He is proficient in using optimization algorithms, such as Grey Wolf Optimizer, and signal processing methods, such as variational mode decomposition, to solve complex structural degradation problems. Additionally, Tian is skilled in utilizing machine learning for structural health monitoring, specifically in the context of offshore platforms and marine vessels, showcasing his versatility in both traditional and cutting-edge research methods.

Awards and Honors

Throughout his academic career, Ph.D. Zhe Tian has received recognition for his impactful research contributions to offshore engineering. His work on dynamic performance assessment and structural health monitoring has earned him several prestigious academic honors. While specific awards and honors are not mentioned in the provided profile, his extensive publication record in reputable journals, including Ocean Engineering, and his role as an associate professor attest to his influence and standing in the academic community. These achievements underline his reputation as a leading researcher in the field of marine and offshore engineering.

Conclusion

Ph.D. Zhe Tian is a prominent figure in marine and offshore engineering, demonstrating remarkable expertise in dynamic analysis, structural health monitoring, and the advancement of innovative technologies for offshore structures. His educational background, professional experience, and extensive research output reflect a strong foundation in the field. Tian’s ability to integrate advanced computational methods, machine learning, and optimization algorithms into his work has set him apart as a leading researcher. He continues to make valuable contributions to the scientific community, with significant implications for offshore engineering, particularly in the areas of renewable energy and structural safety. Moving forward, his potential for further innovation and impact in both academic and industry applications remains high.

Publication Top Notes

  • Computer vision-based non-contact structural vibration measurement: Methods, challenges and opportunities
    • Authors: Cheng, Y., Tian, Z., Ning, D., Chauhan, S., Vashishtha, G.
    • Year: 2025
    • Journal: Measurement: Journal of the International Measurement Confederation
  • Global response expansion for dynamic structures based on the evolutionary orthogonal basis
    • Authors: Liu, F., Guo, J., Tian, Z.
    • Year: 2025
    • Journal: Mechanical Systems and Signal Processing
  • Dynamic performance assessment of offshore wind structures based on root morphology model
    • Authors: Tian, Z., Liu, L., Ji, X., Song, H., Chang, S.
    • Year: 2025
    • Journal: Ocean Engineering
  • Structural health monitoring on offshore jacket platforms using a novel ensemble deep learning model
    • Authors: Wang, M., Incecik, A., Tian, Z., Krolczyk, G., Li, Z.
    • Year: 2024
    • Journal: Ocean Engineering
    • Citations: 4
  • FULL-FIELD STRAIN ESTIMATION FROM MEASURED ACCELERATIONS OF OFFSHORE WIND TURBINE SUPPORT STRUCTURES
    • Authors: Guo, J., Li, Y., Wu, X., Tian, Z., Liu, F.
    • Year: 2024
    • Conference: Proceedings of the International Conference on Offshore Mechanics and Arctic Engineering – OMAE
    • Citations: 1
  • Research on collision identification between ships and offshore wind turbines based on neural network
    • Authors: Guo, Z., Tian, Z., Wang, B., Han, L.
    • Year: 2023
    • Conference: 7th IEEE International Conference on Transportation Information and Safety, ICTIS 2023
  • Structural performance degradation identification of offshore wind turbines based on variational mode decomposition with a Grey Wolf Optimizer algorithm
    • Authors: Ji, X., Tian, Z., Song, H., Liu, F.
    • Year: 2022
    • Journal: Ocean Engineering
    • Citations: 14
  • Fatigue life analysis of monopile foundation offshore wind turbine under coupled multiple loadings
    • Authors: Wang, B., Sun, Z., Xu, C., Tian, Z.
    • Year: 2022
    • Conference: Proceedings of the International Offshore and Polar Engineering Conference
  • Numerical simulation of nanofluid convective heat transfer in an oblique cavity with conductive edges equipped with a constant temperature heat source: Entropy production analysis
    • Authors: Tian, Z., Shahsavar, A., Al-Rashed, A.A.A.A., Rostami, S.
    • Year: 2021
    • Journal: Computers and Mathematics with Applications
    • Citations: 11
  • A Laplace-domain method for motion response estimation of floating structures based on a combination of generalised transfer function and partial fraction
    • Authors: Liu, F., Fu, Q., Tian, Z.
    • Year: 2020
    • Journal: Ships and Offshore Structures
    • Citations: 14