Yang Li | Electrical Engineering | Best Researcher Award

Assoc. Prof. Dr. Yang Li | Electrical Engineering
| Best Researcher Award

Director at Forensic Science Institute China People’s Police University, China.

Dr. Li Yang is an Associate Professor at the China People’s Police University, specializing in electrical fire investigation and forensic evidence analysis. With a Ph.D. in Safety Science and Engineering from Xi’an University of Science and Technology and extensive research on arc faults, short-circuit initiation, and pyrolysis gas analysis, he has become a leading voice in electrical fire forensics. He serves on the Committee on Electrical Fire Safety of the China Fire Association and has led multiple national and provincial projects. Recognized as a Distinguished Teacher of Hebei Province in 2022, his contributions have significantly enhanced fire evidence identification technologies. He has also played a pivotal role in national training programs and technical innovations for fire investigators.

🌍 Professional Profile:

Scopus

🏆 Suitability for the Best Researcher Award :

Dr. Li Yang is a strong candidate for the Best Researcher Award due to his pioneering work in electrical fire investigation. His research advances the forensic science field through the development of intelligent identification technologies and fault simulation devices. He has been instrumental in leading key national and provincial projects, authoring technical patents, and contributing to cutting-edge publications. His academic leadership, combined with practical innovation, addresses critical safety concerns in fire investigation. Recognition by both academic institutions and the Ministry of Public Security underscores his impact. His ability to integrate science, engineering, and real-world application makes him not only a productive researcher but a transformative force in safety science.

🎓 Education :

Li Yang holds a Doctor of Philosophy in Safety Science and Engineering from Xi’an University of Science and Technology (2018–2022). Prior to that, he earned a Master of Science in Materials Science (2008–2011) and a Bachelor of Science in Fire Investigation (2004–2008), both from the China People’s Police University. His interdisciplinary educational background has equipped him with a solid foundation in forensic materials, fire safety engineering, and investigative techniques. This strong academic progression supports his current research and teaching in the field of electrical fire forensics and contributes to the training of future safety professionals in law enforcement and public safety sectors.

🏢 Work Experience :

Dr. Li Yang has served in various academic positions at the China People’s Police University since 2014. Currently an Associate Professor in the Investigation College (since 2020), he previously held positions in the Department of Fire Engineering. Over the years, he has been deeply involved in curriculum development, investigator training, and research supervision. His expertise has also been sought by national bodies such as the Ministry of Public Security, where he serves as a fire-related case investigation expert. He has combined teaching excellence with project leadership across government-funded and institutional research. His dual role as educator and researcher enables him to bridge academic knowledge with field application effectively.

🏅 Awards and Honors :

Dr. Li Yang has received numerous accolades for his contributions. Notably, he was honored as a Distinguished Teacher of Hebei Province in 2022 and selected as a Fire Investigation Expert by the Criminal Investigation Bureau of the Ministry of Public Security in 2020. He is a Committee Member on Electrical Fire Safety with the China Fire Association. His research earned the Third Prize from the Ministry of Public Security Science and Technology Award in 2019. These awards reflect both his academic excellence and societal impact. Through these honors, Dr. Yang has been recognized for his research leadership, technological innovation, and dedication to advancing fire safety practices across China.

🔬 Research Focus :

Dr. Li Yang’s research centers on electrical fire forensics, particularly the mechanisms behind short-circuit faults, arc-related ignition, and trace identification. He applies cutting-edge tools such as STA-FTIR-GC/MS to analyze pyrolysis gases from common materials in electrical systems, aiming to establish the forensic links between device failure and fire cause. His studies also examine the behavior of molten droplets, overcurrent wire degradation, and fault inversion modeling under variable environmental conditions. He leads national R&D programs and technical research projects focusing on intelligent identification technologies and early-warning mechanisms. His goal is to enhance fire evidence analysis reliability and improve training and tools for first responders and forensic investigators in China.

📊 Publication Top Notes:

🔥 Lin Q‑W, Li X, Li Y, Deng J, Man P‑R, Jia Y‑Z. Comparative investigation on thermo‑oxidative degradation and fire characteristics of flame‑retardant and non‑flame‑retardant polyvinyl chloride wires. Thermal Science and Engineering Progress. 2025;57:103210. • 📄 Cited X times

Lin Q‑W, Li Y, Man P‑R, Jin Y, Lyu H, Wang H, Zhao Y, Su W, Deng J. Effects of applied voltages on the occurrence features of short circuits in building cables exposed to constant radiation heat. Journal of Building Engineering. 2024;98:111038. • 📄 Cited Y times

🧪 Lin Q‑W, Li Y, Deng J, F‑F He, P‑R Man. Thermo‑oxidative degradation behavior of poly(vinyl chloride) insulation for new and overloaded wires via TG‑FTIR. Journal of Applied Polymer Science. 2024;141(39):e55994. • 📄 Cited Z times

🧯 Li Z, Lin Q‑W, Li Y, et al. Effect of the current on the fire characteristics of overloaded polyvinyl chloride copper wires. Polymers. 2022;14(21):4766.* • 📄 Cited A times

🔥 Lin Q‑W, Li Y, Deng J. Formation mechanism and microstructural analysis of blistering marks on overcurrent copper wires. Fire Safety Journal. 2024;150(Pt A):104268. • 📄 Cited B times

Li Y, Sun Y, Gao Y, et al. Analysis of overload‑induced arc formation and bead characteristics in a residential electrical cable. Fire Safety Journal. 2022;131:103626. • 📄 Cited C times

Kofi Sarkodie | Structural Health | Best Researcher Award

Mr. Kofi Sarkodie |Structural Health
| Best Researcher Award

PhD Candidate at University of Education Winneba, Ghana.

Kofi Sarkodie is an experienced educator and researcher from Ghana, currently pursuing a Ph.D. in Geography and Regional Planning at the University of Cape Coast. He holds an M.Phil. in Geography with Education and a B.A. (Hons.) in Social Science Education from the University of Education, Winneba. With over 12 years of teaching experience across various levels of Ghana’s pre-tertiary education system, he currently serves as a Geography tutor at Nsaba Presbyterian Senior High School and a part-time lecturer at the University of Cape Coast. His research spans medical geography, climate change, gender issues, and GIS. Sarkodie is committed to learner-centered pedagogy and strives to empower all students, particularly those from underprivileged backgrounds, through inclusive and meaningful education.

🌍 Professional Profile:

ORCID

Google scholar

🏆 Suitability for the Best Researcher Award :

Kofi Sarkodie is highly suitable for the Best Researcher Award due to his impactful contributions in the fields of medical geography, environmental development, and education. His interdisciplinary research has addressed pressing issues such as healthcare-seeking behavior, climate change, and population dynamics in Africa. Sarkodie’s dedication to practical and inclusive education, coupled with his scholarly output, positions him as a role model for applied geographic research. As a Ph.D. candidate and part-time lecturer, he blends theory with practice, influencing future educators and learners alike. His work has been published in reputable journals and showcases a commitment to research that drives social transformation. His intellectual rigor, field engagement, and advocacy for equity in education and development exemplify excellence in research.

🎓 Education :

Kofi Sarkodie’s academic journey reflects a deep commitment to geographic and educational research. He is currently enrolled in a Ph.D. program in Geography and Regional Planning at the University of Cape Coast (2023–present). He earned an M.Phil. in Geography with Education (2018–2020) and a B.A. (Hons.) in Social Science Education, majoring in Geography and minoring in Political Science (2013–2017), both from the University of Education, Winneba. His earlier education includes the West African Senior School Certificate from Manso Adubia Senior High School and the Basic Education Certificate from Bereku D/A Junior High School. Additionally, he has completed international professional courses on technology-enabled learning and teacher education from institutions in Canada and the UK, reflecting his global educational outlook.

🏢 Work Experience :

Kofi Sarkodie brings over 12 years of diverse teaching experience, currently serving as a Geography tutor at Nsaba Presbyterian Senior High School since 2018. He has recently begun working as a part-time assistant lecturer with the University of Cape Coast’s Institute of Education (2024–present). Previously, he served as a Teaching and Research Assistant at OLA College of Education and completed internships at Assin State College. His roles have included curriculum planning, instructional delivery, assessment design, and student mentoring. Sarkodie has been promoted through ranks in the Ghana Education Service, now holding the title of Assistant Director II. His classroom practices emphasize inclusive learning, discipline, and student engagement, which reflect his passion for education and his capacity for academic leadership.

🏅 Awards and Honors :

Kofi Sarkodie has earned recognition within the Ghana Education Service, notably attaining the rank of Assistant Director II in 2023 and Principal Superintendent in 2018, in acknowledgment of his dedication and professionalism. His contributions to both classroom instruction and academic research have led to his selection as a part-time lecturer, highlighting his growing influence in higher education. While specific awards for research excellence may still be pending due to his ongoing doctoral studies, his publications in peer-reviewed journals and invitations to academic programs underscore his rising scholarly profile. Furthermore, his participation in global professional development courses signals his international academic engagement and commitment to lifelong learning. His steady ascent reflects both merit and promise in the education and research fields.

🔬 Research Focus :

Kofi Sarkodie’s research focuses on medical geography, climate change, population studies, GIS, environmental sustainability, and teacher education. His interdisciplinary approach bridges geography with public health, education, and socio-political analysis. His recent publications address healthcare-seeking behavior, environmental challenges, and gendered development issues in Ghana. He is particularly interested in how geographic methods and spatial analysis can inform policymaking and education reform. As a proponent of learner-centered instruction, Sarkodie also researches innovative pedagogy and curriculum design in geography education. His use of GIS tools and field-based methodologies allows him to generate insights that are both academically rigorous and practically impactful. His ongoing doctoral research continues to explore contemporary African development issues through a geographical and planning-oriented lens.

📊 Publication Top Notes:

📘 Sky Economy: Economic Effects of Trading on the Upper Floors of Kotokuraba Market in Cape Coast, Ghana
🗓️ Year: 2025 | 📖 International Journal of Research and Innovation in Social Science (IJRISS) | 📑 Cited by: N/A 🏙️📈

🌿 Influencing Factors of Place and Healthcare Seeking Behaviour of Pregnant Women Accessing Care at a Herbal Clinic in Ghana
🗓️ Year: 2025 | 📖 Advances in Integrative Medicine | 📑 Cited by: 1 🩺🤰🌍

📊 Challenges of Using the “Balance Score Card” (BSC) Framework to Serve as a Basis for Strategic Decisions and Reforms in a Public Sector Organization
🗓️ Year: 2024 | 📖 Global Scientific Journal (GSJ), Vol. 12(10) | 📑 Cited by: N/A 🏛️📉

🛍️ Livelihood Resilience Among Street Hawkers During COVID-19 Lockdown in the Awutu Senya East Municipality, Ghana
🗓️ Year: 2024 | 📖 Journal of Humanities and Applied Social Sciences | 📑 Cited by: N/A 🦠🛒📉

🌍 Land Cover Change Analysis of Ho Municipality
🗓️ Year: 2023 | 📖 Journal of Emerging Technologies and Innovative Research, Vol. 10(5) | 📑 Cited by: 1 🗺️🌳📐

🚗 Mapping Vehicular Accident and Casualties on Ohiamaadwen to Gomoa Odumasi Road Using Geographic Information Systems
🗓️ Year: 2017 | 📖 Academia.edu | 📑 Cited by: N/A 📍🛣️📉

Zhenyun Tang |Structural engineering |Best Research Article Award

Prof. Dr. Zhenyun Tang | Structuralengineering
|Best Research Article Award

 

Professor at BEIJING UNIVERSITY OF TECHNOLOGY ,China.

 

Professor Tang Zhenyun is a distinguished expert in earthquake engineering and disaster mitigation at Beijing University of Technology. As a doctoral supervisor, he contributes significantly to experimental seismic technology and structural vibration control. He serves on multiple national youth editorial and technical committees focused on disaster resilience. His innovative research spans real-time hybrid simulation, base isolation systems, and tuned liquid dampers. Tang has authored high-impact papers in top journals like International Journal of Structural Stability and Dynamics and Soil Dynamics and Earthquake Engineering. He has earned prestigious awards, including the Silver Medal at the Geneva International Exhibition of Inventions and the First Prize from the China Highway and Transportation Society. His scholarly excellence makes him a prime candidate for the Best Research Article Award.


🌍 Professional Profile:

Scopus

🏆 Suitability for the Best Research Article Award

 

Professor Tang Zhenyun is an internationally recognized scholar in earthquake engineering, whose research integrates experimental innovation and practical seismic mitigation strategies. His recent articles in high-impact journals such as Soil Dynamics and Earthquake Engineering and International Journal of Structural Stability and Dynamics reflect cutting-edge advancements in vibration control, base isolation, and real-time hybrid simulation. His award-winning work—recognized by the China Inspection and Testing Society, Geneva International Exhibition of Inventions, and others—demonstrates both theoretical depth and practical impact. As a doctoral supervisor and active member of key professional societies, Professor Tang’s research not only advances academic knowledge but also contributes to safer infrastructure. His scientific rigor and innovation make him highly suitable for the Best Research Article Award.

🎓 Education 

Professor Tang Zhenyun holds a Ph.D. in Engineering, specializing in structural dynamics and earthquake resilience. His doctoral research laid a solid foundation in advanced experimental methods, real-time hybrid simulation, and vibration control technologies for civil infrastructure. He has received comprehensive academic training from leading Chinese institutions, culminating in his doctoral degree, which has empowered him to contribute meaningfully to seismic safety and geotechnical innovation. Throughout his education, Professor Tang demonstrated exceptional academic merit and research capability, which propelled him into a prominent academic and professional trajectory. His educational background enables him to mentor graduate and doctoral students while advancing theoretical and applied research in structural and earthquake engineering.

🏢 Work Experience 

With extensive academic and research experience, Professor Tang Zhenyun serves as a full professor and doctoral supervisor at Beijing University of Technology. He has led and collaborated on national research projects involving seismic mitigation, vibration control, and soil-structure interaction. Tang has developed innovative real-time hybrid simulation techniques and applied them to civil engineering challenges, producing highly cited publications. His engineering expertise is recognized nationally and internationally, and he has played key roles on editorial boards and professional committees in earthquake prevention and disaster resilience. He also bridges academia and industry through applied research, contributing to testing standards and resilient infrastructure development. His multifaceted experience underscores his suitability for awards recognizing impactful and applied research in structural safety.

🏅 Awards and Honors 

Professor Tang Zhenyun has received numerous national and international honors recognizing his contributions to seismic engineering. These include the First Prize from the China Inspection and Testing Society (1/15) and the Second Prize from the Fujian Science and Technology Awards (2/7). He won the Silver Medal at the Geneva International Exhibition of Inventions (1/5) for his innovative engineering solutions. As the sole recipient (1/1) of the Personal Prize from the China Industry-University-Research Institute Collaboration Association, Tang demonstrated exceptional leadership in applied research. He also contributed to the First Prize from the China Highway and Transportation Society (11/15). These accolades collectively reflect his groundbreaking research, interdisciplinary collaborations, and impactful innovations in earthquake resilience and structural safety.

🔬 Research Focus 

Professor Tang Zhenyun’s research is centered on earthquake engineering, with specific expertise in experimental technology, base isolation, seismic mitigation, and vibration control. He specializes in real-time hybrid simulation, where he develops and applies novel methods to model complex soil-structure systems under seismic loads. His studies have advanced the use of GPU computing for structural simulations and proposed new frequency-domain analysis techniques for systems employing tuned liquid dampers. Tang’s work on the stability of hybrid testing systems and parameter identification in dynamic models has influenced the development of resilient infrastructure. His research addresses both theoretical modeling and practical application, making significant contributions to safety-critical structures in earthquake-prone regions and aligning with national resilience strategies.

📊 Publication Top Notes:

  1. Yang, B., Li, Z., Lv, J., Tang, Z., & Wang, L. (2025). Experimental study on load-bearing capacity of T-shaped semi-rigid connected double skin composite shear walls. KSCE Journal of Civil Engineering.
    Citations: 1

  2. Shang, Q., Tang, Z., & Wang, T. (2024). Component-level seismic fragility database of suspended piping systems in buildings. Earthquake Engineering and Resilience.
    Citations: 0

  3. Li, X., Tang, Z., & Du, X.L. (2024). Identification of stable parameters for discrete-time rational approximation of MDOF frequency response functions in semi-infinite media. Gongcheng Lixue/Engineering Mechanics.
    Citations: 1

  4. Liu, H., Tang, Z., & Enokida, R. (2024). Stability prediction method of time-varying real-time hybrid testing system on vehicle-bridge coupled system. Mechanical Systems and Signal Processing.
    Citations: 1

  5. Tang, Z., Li, J., Wang, M., Yu, C., & Li, Z. (2024). Investigation on bearing resistance of thin-walled circular steel tube subjected to eccentric loading. Advances in Structural Engineering.
    Citations: 0

  6. Yi, S., Su, T., & Tang, Z. (2024). Robust adaptive Kalman filter for structural performance assessment. International Journal of Robust and Nonlinear Control.
    Citations: 4

  7. Wu, Y., Dong, X., Liao, W., Zheng, G., & Shang, H. (2024). Field dynamic characteristics testing of foundation isolation structures under horizontal initial displacement. Zhendong Gongcheng Xuebao/Journal of Vibration Engineering.
    Citations: 1

  8. Liu, H., & Tang, Z. (2024). Stability prediction method for real-time hybrid test system based on the measured dynamics of physical test system. Soil Dynamics and Earthquake Engineering.
    Citations: 0

  9. Tang, Z., & Li, X. (2023). Stable parameters identification for rational approximation of single degree of freedom frequency response function of semi-infinite medium. International Journal for Numerical Methods in Engineering.
    Citations: 0

xian-ming Liu | Catalysts | Best Researcher Award

Dr. xian-ming Liu | Catalysts| Best Researcher Award

 

 

Dr. xian-ming Liu Lanzhou University, China .

Dr. Xianming Liu is a professor-level senior engineer in China, with a Ph.D. in Civil Engineering and Mechanics from Lanzhou University. With a strong academic and professional background, Dr. Liu has become a leading figure in his field, combining his expertise in material science, mechanical dynamics, and intelligent technology to advance both theoretical and practical applications. His work has led to significant contributions in the development of innovative materials and mechanical systems. He has held numerous positions, showcasing leadership in research and development, and mentoring the next generation of engineers. His dedication to cutting-edge research has earned him recognition and respect within the academic and professional communities.

🌍 Professional Profile:

Scopus

🎓 Education 

Dr. Xianming Liu obtained his Ph.D. in Civil Engineering and Mechanics from Lanzhou University, one of China’s premier institutions for engineering research. His academic journey equipped him with a comprehensive understanding of material science and mechanical dynamics, and he has applied this knowledge extensively in both his research and engineering practice. Throughout his education, Dr. Liu focused on the integration of intelligent technology with traditional engineering principles, allowing for the development of more efficient and sustainable engineering solutions. His academic pursuits laid the foundation for his future contributions to mechanical systems and material innovation, earning him recognition within both the academic and professional spheres.

🏢 Work Experience 

Dr. Xianming Liu has extensive experience in both academia and industry. As a professor-level senior engineer, he has contributed to numerous research projects and innovations in material science and mechanical dynamics. His expertise spans intelligent technology, where he has applied advanced computational methods to improve engineering designs. Dr. Liu has worked closely with engineering teams to develop cutting-edge solutions for various applications, particularly in the realm of construction materials and mechanical systems. He has also served as a mentor and advisor to postgraduate students, guiding them through research and development projects. His interdisciplinary experience has made him a prominent figure in bridging the gap between academic research and real-world engineering solutions.

🔬 Research Focus 

Dr. Xianming Liu’s research focuses on material science, mechanical dynamics, and the application of intelligent technology in engineering systems. His work aims to enhance the performance and sustainability of materials used in civil engineering applications, incorporating innovative techniques to optimize their mechanical properties. He is particularly interested in the dynamic behavior of materials under various loading conditions and how intelligent systems can be employed to predict and improve material performance. Additionally, Dr. Liu investigates the integration of smart technologies, such as artificial intelligence and sensors, into mechanical systems to monitor and optimize their functionality. His research seeks to develop solutions that contribute to more efficient, sustainable, and resilient engineering practices.

📊 Publication Top Notes:

New method for the preparation of cerium zirconium oxide for automobile exhaust gas catalysis

Fuel, 2025

Mehmet Senturk |Structural Engineering | Best Researcher Award

Dr. Mehmet Senturk | Structural Engineering
| Best Researcher Award

 

Tutor in Engineering at Coventry University, United Kingdom .

Dr. Mehmet Senturk is a distinguished engineering tutor at Coventry University, with a PhD in Structural Engineering. His work integrates seismic design, finite element analysis, and sustainable construction, bridging academic innovation with industrial application. With over ten years of global academic and consultancy experience, Dr. Senturk has led and collaborated on funded research projects, produced high-impact publications, and holds several national patents. His expertise spans structural health monitoring, sensor technologies, image processing, and additive manufacturing. His interdisciplinary approach enhances structural resilience and digital engineering. With 140 citations and an h-index of 6, Dr. Senturk’s commitment to cutting-edge innovation and international collaboration makes him an ideal candidate for the Best Researcher Award.

🌍 Professional Profile:

Orcid 

Scopus

Google scholar

🏆 Suitability for the Best Researcher Award

Dr. Mehmet Senturk exemplifies research excellence through his impactful contributions to structural and earthquake engineering. With a PhD in Structural Engineering and over a decade of academic and industry experience, he has led pioneering work in seismic design, sustainable structures, and smart monitoring technologies. His three national patents, 140+ Google Scholar citations, and extensive publication record in top-tier journals showcase his innovative approach and commitment to advancing engineering science. Dr. Senturk’s interdisciplinary skills—spanning robotics, image processing, and additive manufacturing—have fueled international collaborations and transformative research projects. His ability to bridge theory with real-world applications makes him a leader in engineering innovation and a highly deserving candidate for the Best Researcher Award.

🎓 Education 

Dr. Mehmet Senturk’s academic journey reflects a strong foundation in civil and structural engineering. He holds a PhD in Structural Engineering, where his research focused on advanced modeling and resilience of structural systems under seismic and thermal loads. His MSc in Earthquake Engineering provided expertise in seismic risk mitigation, retrofitting, and dynamic analysis. He began his academic pursuit with a BSc in Civil Engineering, establishing core competencies in materials science, construction practices, and geotechnical fundamentals. This progression has allowed Dr. Senturk to integrate theory with real-world applications, culminating in a comprehensive educational background ideal for interdisciplinary research and innovation in structural and sustainable engineering.

🏢 Work Experience 

Dr. Mehmet Senturk has over a decade of combined academic and industrial experience. He currently serves as a Tutor in Engineering at Coventry University, where he mentors future engineers and contributes to pioneering research. His career includes contributions to over 20 industry projects, with a focus on structural diagnostics, seismic assessment, and smart infrastructure systems. Dr. Senturk has collaborated with institutions such as the University of Sheffield, Istanbul Technical University, and Istanbul Rumeli University. His cross-functional work includes the design and testing of cold-formed steel, bolted precast systems, and high-temperature-resistant components. His experience spans robotics, sensor integration, and image processing, positioning him at the intersection of civil, digital, and structural engineering.

🏅 Awards and Honors 

Dr. Mehmet Senturk’s research achievements have earned national recognition through multiple Turkish patents, reflecting his contributions to innovative structural systems and testing technologies. His patented inventions include a two-piece high-temperature test furnace and advanced connection systems for reinforced concrete. He has been a prolific reviewer for leading journals such as Engineering Structures and Structures (Elsevier), completing over 30 peer-reviews. His role in collaborative projects with renowned academics from institutions like the University of Sheffield and Istanbul Technical University highlights his influence in global research. With 140 Google Scholar citations and an h-index of 6, Dr. Senturk’s consistent excellence in research, collaboration, and innovation underlines his strong suitability for awards recognizing outstanding research contributions.

🔬 Research Focus 

Dr. Mehmet Senturk’s research focuses on enhancing structural resilience through the integration of traditional civil engineering with advanced digital tools. His core areas include seismic performance of structures, finite element modeling, and sustainable construction. He investigates structural systems under complex load conditions—thermal, seismic, and axial—using both experimental and numerical methods. His research incorporates sensor technologies, structural health monitoring, and robotics platforms like Arduino and Raspberry Pi for real-time diagnostics. He is also active in additive manufacturing and digital prototyping of test systems. Dr. Senturk’s work supports the development of smarter, safer infrastructure through interdisciplinary innovation, evidenced by his patents, publications in top-tier journals, and ongoing collaborations across Europe and Turkey.

📊 Publication Top Notes:

  1. Senturk, M., Ilki, A., & Hajirasouliha, I. (2025).
    Replaceable monolithic-like beam-to-beam precast connection for RC frames: Concept development and design procedure.
    Structures.
    https://doi.org/10.1016/j.istruc.2025.108875

  2. Öztürk, F., Mojtabaei, S. M., Senturk, M., Pul, S., & Hajirasouliha, I. (2022).
    Buckling behaviour of cold-formed steel sigma and lipped channel beam–column members.
    Thin-Walled Structures, 173, 108963.
    https://doi.org/10.1016/j.tws.2022.108963

  3. Pul, S., Senturk, M., Ilki, A., & Hajirasouliha, I. (2021).
    Experimental and numerical investigation of a proposed monolithic-like precast concrete column-foundation connection.
    Engineering Structures, 239, 113090.
    https://doi.org/10.1016/j.engstruct.2021.113090

  4. Pul, S., Atasoy, A., Senturk, M., & Hajirasouliha, I. (2021).
    Structural performance of reinforced concrete columns subjected to high-temperature and axial loading under different heating-cooling scenarios.
    Journal of Building Engineering, 43, 102477.
    https://doi.org/10.1016/j.jobe.2021.102477

  5. Senturk, M., Pul, S., Ilki, A., & Hajirasouliha, I. (2020).
    Development of a monolithic-like precast beam-column moment connection: Experimental and analytical investigation.
    Engineering Structures, 206, 110057.
    https://doi.org/10.1016/j.engstruct.2019.110057

  6. Pul, S., & Senturk, M. (2017).
    A bolted moment connection model for precast column-beam joint.
    World Congress on Civil, Structural, and Environmental Engineering.
    https://doi.org/10.11159/icsenm17.129