Md sulayman Hossen | Structural Health Monitoring | Research Excellence in Civil and Environmental Engineering Award

Mr Md sulayman Hossen | Structural Health Monitoring | Research Excellence in Civil and Environmental Engineering Award

MSc at Chongqing University, China

Hossen Md Sulayman, born on January 8, 2000, is a Bangladeshi male currently pursuing a Master’s in Civil Engineering at Chongqing University, China. With a strong academic background, he has excelled in structural dynamics, seismic engineering, and advanced material mechanics. His research focuses on structural health monitoring, particularly the effects of temperature on bridge modal parameters. Hossen has presented his innovative work at international conferences and published in high-impact journals. Fluent in Bengali, English, Chinese, and Arabic, he is a dedicated researcher with a passion for integrating sustainability and technology in civil engineering.

Professional Profile

Google Scholar

Education 🎓

Hossen Md Sulayman is currently pursuing a Master’s in Civil Engineering at Chongqing University, China, with an average grade of 86.3/100. His coursework includes Structural Dynamics, Advanced Concrete Structure Design, and Numerical Analysis. He previously earned a Bachelor’s degree in Civil Engineering from Chongqing Jiaotong University, achieving an average grade of 87.4/100. His academic journey is supported by the prestigious Chinese Government Scholarship (CSC), covering all fees and providing a monthly stipend.

Experience 💼

Hossen has served as a Research Assistant at Chongqing University, where he conducted bridge inspections and data analysis. He has also developed a novel seismic isolation system for civil structures and contributed to the Longturm Health Monitoring project for Sansheng Large Bridge. His internship at the Research Institute of Smart City in Liyang, Jiangsu, involved 3D printing construction and international collaboration.

Awards and Honors 🏆

Hossen was awarded the Chinese Government Scholarship (CSC) for his Master’s studies, covering all fees and providing a monthly stipend. He has presented his research at the 3rd Digital City and Intelligent Construction conference and the First Youth Geological Forum in Urumqi. His innovative seismic isolation system has garnered attention for its potential to reduce seismic loads during earthquakes.

Research Focus 🔍

Hossen’s research focuses on Structural Health Monitoring (SHM), particularly the effects of temperature on the modal parameters of continuous rigid frame bridges. He has developed a novel seismic isolation system and applied advanced signal processing techniques, including FFT and wavelet denoising, to analyze structural data. His work aims to enhance the safety and longevity of civil infrastructure.

Publication Top Notes 📚

  1. Effect of Temperature on the Modal Parameters of Continuous Rigid Frame Bridge – Developments in the Built Environment, 2025
  2. SPSVO: A Self-Supervised Surgical Perception Stereo Visual Odometer for Endoscopy – Robotica, 2023

Conclusion 🌟

Hossen Md Sulayman is a dedicated and innovative researcher with a strong academic background and practical experience in civil engineering. His work in structural health monitoring and seismic isolation systems demonstrates his commitment to advancing the field. With numerous publications and presentations, Hossen is poised to make significant contributions to civil engineering research and practice.

 

Weijie Li – Civil Structural Health Monitoring – Best Researcher Award

Weijie Li - Civil Structural Health Monitoring - Best Researcher Award

Dalian University of Technology - China

AUTHOR PROFILE

ORCID
GOOGLE SCHOLAR

WEIJIE LI: LEADING RESEARCHER IN SMART MATERIALS AND STRUCTURAL HEALTH MONITORING 🌐

EDUCATION AND EARLY CAREER 🎓

Dr. Weijie Li earned his Ph.D. in Mechanical Engineering from the University of Houston, USA, graduating in 2017. His academic journey has been marked by a focus on innovative technologies and their applications in civil engineering, particularly in the realms of structural health monitoring and smart materials. Prior to his doctoral studies, he pursued his undergraduate and master's degrees at Dalian University of Technology, China, setting a solid foundation in infrastructure engineering.

PROFESSIONAL EXPERIENCE AND CURRENT ROLE 🏢

Currently serving as an Associate Professor in the School of Civil Engineering at Dalian University of Technology, Dr. Li has been instrumental in advancing research in smart materials and structural health monitoring. Previously, he held a prestigious postdoctoral researcher position at Harbin Institute of Technology Shenzhen Graduate School, contributing significantly to the field from 2018 to 2021.

RESEARCH FOCUS AND CONTRIBUTIONS 🛠️

Dr. Li's research is acclaimed for its pioneering contributions to the development and application of fiber optic sensors, piezoelectric sensors, and electromechanical impedance techniques in monitoring structural integrity. His work includes breakthroughs such as the development of spherical smart aggregates for concrete crack repair monitoring and innovative methods for strain measurement using smartphone-based technologies.

PUBLICATIONS AND ACADEMIC IMPACT 📚

With over 73 publications in esteemed journals like Smart Materials and Structures, Sensors, and Structural Health Monitoring, Dr. Li's research has garnered significant citations and recognition in the academic community. His contributions extend to multiple disciplines, including civil engineering, materials science, and sensor technology, reflecting his interdisciplinary approach and commitment to advancing knowledge in his field.

AWARDS AND RECOGNITIONS 🏆

Dr. Li's expertise and dedication have been recognized through numerous awards and accolades within the academic and research communities. His work has been pivotal in enhancing the understanding and application of smart materials in civil infrastructure, paving the way for safer and more resilient structural designs.

PROFESSIONAL NETWORK AND ENGAGEMENT 🌟

Dr. Weijie Li maintains an active presence in the academic community through memberships in professional societies and collaborations with international research institutions. His leadership in research projects and mentorship of students underscores his commitment to fostering the next generation of scholars and innovators in civil engineering and smart materials.

FUTURE DIRECTIONS AND INNOVATIONS 🚀

Moving forward, Dr. Li continues to explore new frontiers in smart materials and structural health monitoring, aiming to integrate cutting-edge technologies into practical applications that enhance the safety and efficiency of civil infrastructure worldwide. His visionary research promises to shape the future of structural engineering, addressing global challenges through innovative solutions.

NOTABLE PUBLICATION

Authors: Weijie Li, Changhang Xu, Siu Chun Michael Ho, Bo Wang, Gangbing Song
Publication date: 2017/3/22
Journal: Sensors
Publisher: Multidisciplinary Digital Publishing Institute.
Authors: Guangping Li, Mingzhang Luo, Jinping Huang, Weijie Li
Publication date: 2023/3/1
Journal: Mechanical Systems and Signal Processing
Publisher: Academic Press.
Authors: Weijie Li, Tiejun Liu, Huangbin Xiang
Publication date: 2021/9
Journal: Journal of Intelligent Material Systems and Structures
Publisher: SAGE Publications
Authors: Weijie Li, Jianjun Wang, Tiejun Liu, Mingzhang Luo
Publication date: 2020/1/27
Journal: Smart Materials and Structures
Publisher: IOP Publishing

Rodolfo Javier Tirado Gutiérrez – Structural Dynamic – Best Researcher Award

Rodolfo Javier Tirado Gutiérrez - Structural Dynamic - Best Researcher Award

Polytechnic University of Catalonia - Spain

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS:

Rodolfo Javier Tirado Gutiérrez's academic journey reflects a commitment to seismic and structural engineering. His early academic pursuits include pursuing a Doctoral candidacy in Earthquake Engineering and Structural Dynamics at the Polytechnic University of Catalonia, Barcelona, with a focus on the probabilistic assessment of tall buildings using advanced non-linear methods. Additionally, his Master's degree from the Industrial University of Santander, Colombia, involved the evaluation of structural reliability, showcasing a foundation in seismic performance and reinforced concrete structures.

PROFESSIONAL ENDEAVORS:

Tirado Gutiérrez's professional journey is marked by diverse experiences. As a Design Manager-Director at DIP S.A.S in Bucaramanga, Colombia, he has been actively involved in the design, construction, and supply of pre-stressed systems. His role as a Director of Special Projects at Mekano4 Innovative Solutions in Barcelona, Spain, focuses on the design and construction of materials in projects related to post-tensioning systems. These roles highlight his leadership, strategic decision-making, and technical expertise in structural analysis.

CONTRIBUTIONS AND RESEARCH FOCUS:

As a passionate researcher, Tirado Gutiérrez has made significant contributions to the field of seismic and structural engineering. His published work in Engineering Structures demonstrates a probabilistic estimation of the dynamic response of high-rise buildings via transfer functions. Ongoing research projects, including the efficiency to predict nonlinear dynamic responses of tall buildings and the importance of structural configuration in seismic performance, indicate a dedication to advancing knowledge in the field.

IMPACT AND INFLUENCE:

Tirado Gutiérrez's contributions to conferences, such as COMPDYN 2023, reveal his active engagement with the academic community. Presenting on topics like the estimation of dynamic responses through transfer functions and scaling ground motion records demonstrates an effort to share insights and potentially influence advancements in computational methods for structural dynamics and earthquake engineering.

LEGACY AND FUTURE CONTRIBUTIONS:

Tirado Gutiérrez's legacy is shaping up as a dedicated researcher and professional with a strong foundation in seismic and structural engineering. His future contributions may involve further advancements in probabilistic assessments, nonlinear dynamic response predictions, and exploring the intricacies of structural configuration in seismic performance.

NOTABLE PUBLICATION