sadra rostami arnesa | Failure Analysis and Damage Mechanics | FRP Digital Innovation Award

Mr. sadra rostami arnesa | Failure Analysis and Damage Mechanics | FRP Digital Innovation Award

Faculty member at Department of Mechanical Engineering, National University of Skills (NUS), Tehran, Iran

Sadra Rostami is a distinguished mechanical engineer specializing in automotive mechanics. With a strong academic background and extensive research contributions, he has made significant advancements in the fields of thermodynamics, fuel cells, and heat exchangers. As a faculty member at Shahid Beheshti Urmia National Skill University, he has played a pivotal role in shaping engineering education and mentoring aspiring researchers.

Profile

Sholar

Education

Sadra Rostami holds a Diploma and Bachelor’s degree in Mechanical Engineering with a focus on automotive mechanics. He further pursued a Master’s degree in Mechanical Engineering, specializing in Motor and Energy Conversion. His academic journey has provided him with a robust foundation in thermal sciences, computational fluid dynamics, and energy systems, which have been the cornerstone of his research and professional endeavors.

Experience

With over a decade of experience in academia and research, Rostami has served as an instructor and researcher at several esteemed institutions. He has taught specialized courses in automotive mechanics at institutions such as Azad University of Khoy and Meraj Non-Profit University. Currently, he is a faculty member at Shahid Beheshti Urmia National Skill University, where he is actively engaged in both teaching and research. His expertise extends to supervising research projects, developing course curricula, and contributing to educational reforms in mechanical engineering.

Research Interests

Rostami’s research interests lie in the areas of energy conversion, fuel cell performance optimization, heat exchanger design, and computational fluid dynamics. His studies focus on enhancing the efficiency of energy systems, particularly in polymer electrolyte membrane fuel cells (PEMFCs) and thermofluid interactions in heat exchangers. His work has contributed to improving sustainable energy solutions and optimizing engineering designs for better performance.

Awards and Recognitions

Sadra Rostami has received multiple accolades for his contributions to engineering research and education. He has been actively involved in reviewing academic manuscripts and mentoring students in various research projects. His excellence in research has been recognized by national and international institutions, solidifying his reputation as a leading researcher in mechanical engineering.

Selected Publications

“Numerical investigation of 3D rhombus designed PEMFC on the cell performance”International Journal of Green Energy (2021)

Cited by multiple research papers exploring fuel cell efficiency enhancements.

“Experimental investigations of thermos-exergitic behavior of a four-start helically corrugated heat exchanger with air/water two-phase flow”International Journal of Thermal Sciences (2019)

Noted for contributions to heat exchanger performance improvements.

“Enhancing the performance of polymer electrolyte membrane fuel cell by optimizing the operating parameter.”Journal of the Brazilian Society of Mechanical Sciences and Engineering (2019)

Cited by studies in sustainable energy solutions.

“Investigation of the effect of gradual change of the inner tube geometrical configuration on the thermal performance of the double-pipe heat exchanger”Iranian Journal of Chemistry and Chemical Engineering (2023)

Recognized for advancements in thermal systems engineering.

“In the Study of the Effects of the Pipe Design of a Heat Exchanger on the Thermo-Fluid Characteristics and Exergy Destruction”MDPI, Switzerland (2025)

Groundbreaking research in the field of thermodynamics and heat transfer.

Conclusion

Sadra Rostami is a highly suitable candidate for the FRP Digital Innovation Award due to his extensive research in numerical modeling, heat transfer, and energy optimization, all of which are integral to modern FRP applications. His academic and industry contributions position him as an innovator in digital engineering solutions for material science and energy systems.

If you’re considering a nomination, Sadra Rostami’s profile strongly aligns with the objectives of the FRP Digital Innovation Award.

Debin Wang | Fiber Reinforcement in Composites | Best Researcher Award

Assoc Prof Dr. Debin Wang | Fiber Reinforcement in Composites | Best Researcher Award

Professor at Dalian Jiaotong University, China

Profile:

Current Position🌟

De-bin Wang serves as an Associate Professor at Dalian Jiaotong University, where he contributes significantly to the fields of structural seismic resistance and earthquake engineering. With his strong foundation in structural engineering, he specializes in innovative solutions that enhance infrastructure resilience, particularly in seismic-prone regions. His role as an educator and researcher allows him to guide students while driving forward projects in structural dynamics and earthquake-resistant design.

Academic Background📚

Dr. Wang holds a PhD from Dalian University of Technology, earned in 2013, where he developed a solid academic foundation in civil and structural engineering. Following his doctorate, he began his teaching and research career at Dalian Jiaotong University. His background emphasizes earthquake engineering, where he has conducted extensive studies on seismic-resistant structures, a field in which he continues to expand his expertise and make noteworthy contributions.

Scholarships and Awards🏆

Over his career, Dr. Wang has earned multiple awards, reflecting his commitment and expertise in his field. He has received recognition for his contributions to seismic research and his role as a leader in innovative earthquake-resistant technologies. These accolades underscore his dedication to research excellence and pioneering solutions in structural engineering.

Ongoing Research Projects🔍

Dr. Wang is currently leading two significant research projects focusing on seismic performance and structural collapse dynamics:

National Natural Science Foundation Youth Program: This project, titled “Research on Seismic Performance and Asymmetric Structural Collapse Process of Reinforced Concrete Columns under Composite Dynamic Loads,” explores how various dynamic loads influence reinforced concrete columns’ stability during seismic events. The project aims to improve our understanding of structural resilience and inform safer building practices.

Liaoning Provincial Department of Education General Project: This project investigates “The Collapse Process of Bridge Structures Considering Bridge Pier Corrosion and Dynamic Effects.” By examining corrosion’s effects on bridge integrity, this research addresses long-term durability and seismic safety in aging infrastructure.

Consultancy and Industry Projects📜

Dr. Wang actively collaborates with industry leaders on projects that bring his research into practical application:

  • China Railway No.3 Engineering Group Co., Ltd.: Dr. Wang is consulting on the seismic performance of prefabricated concrete bridge pier connections, a project designed to enhance the stability of bridge structures.
  • Institute of Disaster Prevention: Here, he focuses on developing self-centering energy-dissipating braces for bridges, adding an extra layer of protection against seismic forces.

These industry projects highlight his commitment to ensuring that his research positively impacts infrastructure safety and resilience.

Research Interests🔬

Dr. Wang’s research interests center around earthquake engineering, seismic resistance, energy dissipation in structures, and structural health monitoring. His work has led to innovative dampers and seismic resistance mechanisms aimed at protecting infrastructure from earthquakes. His contributions to earthquake-resistant technologies showcase his vision of safer, more resilient urban spaces.

Professional Associations🧑‍🔬

As a recognized expert, Dr. Wang is actively involved in professional organizations related to structural and earthquake engineering. His memberships help him stay connected with other professionals and researchers, promoting collaboration and knowledge-sharing that strengthen his research output and industry impact.

Training & Workshops🎓

Throughout his career, Dr. Wang has participated in various workshops and training programs. These sessions cover topics such as advanced earthquake engineering, new seismic technologies, and structural health monitoring, keeping him updated with the latest trends and methodologies.

Oral Presentations📢

Dr. Wang frequently presents his findings at conferences and symposia where he shares insights into self-centering systems and damping technologies for earthquake resilience. His presentations attract the attention of both academic and industry professionals interested in adopting innovative structural solutions to improve safety in seismic zones.

Tasks Completed as a Researcher🏅

As a lead researcher, Dr. Wang has successfully completed multiple tasks, including:

  • Overseeing extensive field tests on seismic-resilient materials.
  • Developing simulation models for earthquake-induced stress analysis in structures.
  • Authoring comprehensive reports for government and industry stakeholders on seismic risk mitigation.

These accomplishments reflect his dedication to thorough, impactful research.

Success Factors🌱

Dr. Wang attributes his success to a strong foundation in structural engineering principles and a persistent drive to address real-world challenges through innovation. His work ethic, collaborative spirit, and ability to translate research into tangible industry solutions make him a valued contributor to the field.

Publications & Laboratory Experience📊

Dr. Wang’s laboratory experience encompasses a wide array of structural tests, from material durability analysis to seismic simulations that examine structural behavior under earthquake conditions. His lab-based findings directly contribute to the publications and patents he has secured, illustrating his approach to rigorous, data-driven research that informs his innovative solutions in seismic resilience.

📖Publications:

Paper Title: Experimental and Analytical Investigation on the Behavior of Deformation-Amplified Torsional Steel-Tube Dampers

  • Authors: Wang, D.-B., Wang, S.-H., Sun, Z.-G., Wang, W.-M.
  • Journal: Journal of Constructional Steel Research
  • Year: 2025

Paper Title: Study on the mechanical properties of a viscoelastic self-centering brace with rotational displacement amplification and its application in RC frames

  • Authors: Wang, D., Pang, R., Fan, G., Wang, G.
  • Journal: Journal of Building Engineering
  • Year: 2024

Paper Title: Performance Tests of Rotating-Amplification Type Friction Self-Centering Brace and Its Restoring Force Model Verification

  • Authors: Wang, D., Zhang, X., Fu, X., Wang, W., Liu, L.
  • Journal: Zhendong yu Chongji/Journal of Vibration and Shock
  • Year: 2024

Paper Title: Study on Seismic Performance of Exterior Reinforced Concrete Beam-Column Joint Under Variable Loading Speeds or Axial Forces

  • Authors: Fan, G., Xiang, W., Wang, D., Dou, Z., Tang, X.
  • Journal: Earthquake and Structures
  • Year: 2024

Paper Title: Research on the Mechanical Model and Hysteresis Performance of a New Mild Steel-Rotational Friction Hybrid Self-Centering Damper

  • Authors: Wang, D., Pang, R., Wang, G., Fan, G.
  • Journal: Materials
  • Year: 2023

 

Miao shuaijie | Failure Analysis and Damage Mechanics | Best Researcher Award

Dr. Miao shuaijie | Failure Analysis and Damage Mechanics | Best Researcher Award

Doctorate at Beijing Jiaotong University, China

Profile:

Current Position 🌟

Shuaijie Miao is currently a doctoral candidate at Beijing Jiaotong University, where he is pursuing his PhD in Road and Railway Engineering. His research focuses on innovative health assessment technologies and understanding the material damage mechanisms of transit facilities, aiming to enhance the safety and reliability of transportation systems. Through his academic and practical experiences, Miao is committed to addressing complex scientific challenges in the transportation sector.

Academic Background 🎓

Shuaijie holds a master’s degree in Traffic Information Engineering, where he developed a strong foundation in both the theoretical and practical aspects of transportation systems. He also possesses a bachelor’s degree in Traffic Engineering, which equipped him with essential knowledge about traffic flow, infrastructure, and transportation safety. During his master’s studies, he was fortunate to receive joint training at the Institute of Semiconductors of the Chinese Academy of Sciences, where he was involved in the development of optical fiber sensors and their applications in detection technology. This experience has significantly enhanced his technical skills and research capabilities.

Ongoing Research 🛤️

Miao’s current research projects are aligned with national priorities in transportation infrastructure and focus on the following key areas:

Typical Disease Mechanism and Intelligent Identification Technology of Ballastless Track (2022JBQY009): This ongoing project, funded by the Fundamental Research Funds for the Central Universities, aims to identify and analyze the mechanisms causing damage in ballastless tracks.

Accurate Detection and Intelligent Identification Technology of Hidden Defects of High-Speed Railway Subgrade Structure (2022YFB2603302): As part of a National Key R&D Program, this project focuses on developing technologies to detect hidden defects in high-speed railway subgrade structures, which are critical for ensuring the safety and longevity of railway infrastructure.

Research on the Mechanism and Control Methods of Performance Degradation of Ballastless Track Structures (2024JBGP009): This national-level platform project aims to study the degradation mechanisms affecting ballastless track structures and to devise effective control methods.

Research Interests 🔍

Miao’s research interests lie at the intersection of transportation engineering and advanced sensing technologies. He is particularly focused on the following areas:

  • Health assessment technologies for transportation infrastructure
  • Material damage mechanisms of transit facilities
  • Innovative sensing and detection technologies in engineering applications

His work aims to address pressing challenges in the maintenance and safety of transportation systems, ultimately contributing to the development of smarter and more resilient infrastructure.

Scholarships and Awards 🏆

Throughout his academic journey, Miao has been recognized for his outstanding contributions to research and education. His involvement in two key national scientific research projects has not only honed his research skills but also positioned him as a valuable contributor to the field of transportation engineering. He has received scholarships for his academic performance, reflecting his dedication and commitment to excellence.

Professional Associations 🌐

Shuaijie Miao is an active member of several professional associations related to transportation engineering. These memberships allow him to stay informed about the latest developments in the field and to network with other professionals. Engaging with these communities also enables him to share his research findings and collaborate on various projects.

Training & Workshops 📖

To further enhance his skills and knowledge, Miao has participated in various training programs and workshops related to transportation engineering and sensor technologies. These experiences have equipped him with practical skills that complement his academic knowledge, making him a well-rounded researcher.

Oral Presentations 🎤

Miao has presented his research findings at several conferences, showcasing his ability to communicate complex ideas effectively. His presentations have received positive feedback from peers and experts, highlighting his capability to engage audiences with his insights into transportation infrastructure and health assessment technologies.

Success Factors 🌈

Shuaijie Miao attributes his success to several factors, including his passion for research, dedication to problem-solving, and collaboration with esteemed mentors and colleagues. His proactive approach to learning and continuous improvement has allowed him to excel in his studies and research endeavors.

Publications & Laboratory Experience 🧪

With a robust publication record and hands-on laboratory experience, Miao has demonstrated his ability to conduct impactful research. His work on optical fiber sensors and their applications in transportation systems has positioned him as a promising researcher in the field. Miao continues to explore innovative solutions to improve the safety and efficiency of transportation infrastructure, aiming to make a lasting impact on the industry.

📖Publications:

Paper Title: Detection of ballastless track interlayer gap based on vehicle’s multivariate dynamic response and deep learning

  • Authors: Miao, S., Gao, L., Nian, F., Xin, T., Zhong, Y.
  • Journal: Mechanical Systems and Signal Processing
  • Year: 2025

Paper Title: Influence of differential deterioration of random track irregularity at different wavelengths on high-speed train safety

  • Authors: Tong, F., Gao, L., Hou, B., Cai, X., Xin, T.
  • Journal: International Journal of Rail Transportation
  • Year: 2024

Paper Title: Ballastless track mortar layer void detection by high-order statistical analysis of axle box acceleration

  • Authors: Miao, S., Gao, L., Tong, F., Ma, C., Chen, Z.
  • Journal: Measurement: Journal of the International Measurement Confederation
  • Year: 2023

Paper Title: Experimental study on fatigue performance of fully assembled ballastless track structure under vehicle cyclic load

  • Authors: Miao, S., Zhong, Y., Gao, L., Xiao, Y., Zhang, Z.
  • Journal: Zhongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Central South University (Science and Technology)
  • Year: 2023

Paper Title: Research on high precision optical fiber acoustic emission system for weak damage location on concrete

  • Authors: Miao, S., Gao, L., Tong, F., Zhong, Y.
  • Journal: Construction and Building Materials
  • Year: 2022

 

 

Ibrahim Shaaban | Fiber Characterization and Testing | Best Researcher Award

Prof. Ibrahim Shaaban | Fiber Characterization and Testing | Best Researcher Award

Professor at University of west London, United Kingdom

Profiles:

Current Position 🔝

Prof. Ibrahim Galal Shaaban is currently serving as the Chair Professor of Structural Engineering and the Head of the Civil Engineering Department at a prominent university, a role he took on in 2023. As the Chair Professor, he leads a dynamic team of civil engineering experts, spearheading cutting-edge research and guiding future generations of engineers. His leadership in the MSc Structural Engineering program (since September 2022) further demonstrates his commitment to the development of specialized education in structural engineering, nurturing talent and driving forward innovative methodologies in civil infrastructure.

Publication Achievements 📚

Prof. Shaaban has an extensive publication record, with numerous peer-reviewed articles in high-impact journals. His research is widely cited, reflecting his profound influence on the fields of reinforced concrete analysis, structural engineering, and technology. He has contributed to papers on the structural integrity of materials, concrete design, and advanced construction techniques, earning him international recognition as a thought leader. His work on sustainable construction materials is particularly notable, addressing the environmental challenges faced by modern engineering.

Ongoing Research 🔬

Prof. Shaaban is actively involved in groundbreaking research, focusing on reinforced concrete structures, structural resilience, and innovative engineering materials. His ongoing projects explore the durability and performance of structures in extreme environmental conditions, contributing to the global discourse on sustainability in civil engineering. Additionally, his research on smart materials and structural health monitoring systems aims to enhance the longevity and safety of infrastructure, integrating cutting-edge technologies with traditional engineering principles.

Research Interests 🧠

Prof. Shaaban’s research interests span a broad range of topics within civil and structural engineering. His expertise includes:

  • Reinforced concrete analysis and design.
  • Advanced structural materials and their performance.
  • Sustainability in construction and green building techniques.
  • Structural health monitoring and damage detection in civil structures.
  • Seismic performance of structures and their resilience to natural disasters.

His work not only advances academic knowledge but also provides practical solutions to contemporary engineering challenges, ensuring safer and more sustainable infrastructure for future generations.

Academic Background 🎓

Prof. Shaaban has a distinguished academic background that laid the foundation for his illustrious career. He earned his PhD in Reinforced Concrete Analysis and Technology from the University of Dundee, UK, in 1993, following a Master’s degree in Structural Engineering from Ain Shams University, Cairo, Egypt, in 1988. His academic journey began with a Bachelor of Science in Civil Engineering, also from Ain Shams University, where he graduated with honors in 1984.

His academic training at prestigious institutions, combined with his practical experience, has solidified his reputation as a leading expert in civil and structural engineering.

Scholarships and Awards 🏆

Throughout his career, Prof. Shaaban has been the recipient of several prestigious awards, recognizing his contributions to engineering education and research. His accolades include awards for excellence in teaching, innovative research, and leadership in engineering development. These awards highlight his commitment to pushing the boundaries of engineering knowledge and his dedication to improving the educational framework for future engineers.

Professional Associations 🤝

Prof. Shaaban is an active member of several professional engineering bodies, which help to foster collaboration and knowledge sharing within the field. His memberships include:

  • American Society of Civil Engineers (ASCE)
  • Institution of Civil Engineers (ICE)
  • Egyptian Society of Engineers (ESE)

His involvement in these associations allows him to stay at the forefront of developments in civil engineering and contribute to international standards and practices.

Training & Workshops 📚

Over the course of his career, Prof. Shaaban has organized and participated in numerous training sessions and workshops, both nationally and internationally. These training programs cover topics such as concrete technology, structural analysis, and construction management, providing valuable insights to engineering professionals and students alike.

Oral Presentations 🗣️

Prof. Shaaban is a sought-after speaker at international conferences, where he presents his research findings and shares his expertise on civil engineering topics. His presentations have addressed issues like sustainability in construction, reinforced concrete innovations, and resilience of structures under seismic loads. His ability to communicate complex concepts to both academic and professional audiences has cemented his standing as a global authority in structural engineering.

Tasks Completed as a Researcher 🔧

Prof. Shaaban has successfully completed numerous research projects, many of which have been funded by prestigious grants. His work has contributed to the development of sustainable building materials, improved the safety and performance of concrete structures, and advanced innovative construction techniques. His research has had a lasting impact on the way modern infrastructure is designed and built, ensuring that structures are more resilient and environmentally friendly.

Success Factors ⭐

The success of Prof. Shaaban’s career can be attributed to his relentless pursuit of knowledge, innovative thinking, and dedication to both teaching and research. His ability to blend academic rigor with practical applications has made him a respected figure in civil engineering. His leadership roles, from Dean to Head of Department, showcase his commitment to developing educational systems that produce well-rounded, capable engineers.

Publications & Laboratory Experience 🧪

Prof. Shaaban’s laboratory experience in concrete technology and structural testing has played a significant role in his research output. He has authored numerous publications on reinforced concrete design, structural optimization, and material performance, contributing to the advancement of engineering science. His laboratory work continues to inform his research, ensuring that his findings are grounded in practical, real-world applications.

📖Publications:

Paper Title: The Efficiency of Calcium Oxide on Microbial Self-Healing Activity in Alkali-Activated Slag (AAS)

  • Authors: Hammad, N., El-Nemr, A., Shaaban, I.G.
  • Journal: Applied Sciences (Switzerland)
  • Year: 2024

Paper Title: Coupling Behavior of Autogenous and Autonomous Self-Healing Techniques for Durable Concrete

  • Authors: Hassanin, A., El-Nemr, A., Shaaban, H.F., Saidani, M., Shaaban, I.G.
  • Journal: International Journal of Civil Engineering
  • Year: 2024

Paper Title: Predictive models for mechanical properties of hybrid fibres reinforced concrete containing bamboo and basalt fibres

  • Authors: Chin, S.C., Shaaban, I.G., Rizzuto, J.P., Roslan, N.I.M., Aziz, A.A.
  • Journal: Structures
  • Year: 2024

Paper Title: Experimental and Analytical Study on the Shear Transfer in Composite Post Tensioned Precast Concrete Girders

  • Authors: Nabil, W., Shaaban, I.G., Khalil, A., Elwan, S.
  • Journal: International Journal of Civil Engineering
  • Year: 2024

Paper Title: Steel Reinforced Self-Compacting Concrete (SCC) Cantilever Beams: Bond Behaviour in Poor Condition Zones

  • Authors: Montaser, W.M., Shaaban, I.G., Rizzuto, J.P., Rashad, A., Sadany, S.M.E.
  • Journal: International Journal of Concrete Structures and Materials
  • Year: 2023