Mr.  MD Sulayman Hossen – Civil Engineering – Young Scientist Award

Mr.  MD Sulayman Hossen - Civil Engineering - Young Scientist Award

Chongqing University - China

Author Profile 

GOOGLE SCHOLAR 

🎓 Early academic pursuits

Hossen MD Sulayman embarked on his academic journey with a passion for civil engineering, earning his bachelor's degree from chongqing jiaotong university. his undergraduate studies focused on bridge engineering, structural mechanics, and material mechanics, laying a solid foundation in the field. excelling in academics, he achieved an impressive average grade of 87.4/100 and completed a thesis on the a14 motorway c.r. 250 bridge design. his enthusiasm for learning and research led him to pursue a master's degree in civil engineering at chongqing university, where he delved into advanced topics such as structural dynamics, composite structures, and numerical analysis. maintaining an excellent academic record with an average of 86.3/100, he conducted significant research on the effect of temperature on the modal parameters of continuous rigid frame bridges.

🌐 Professional endeavors

Continuing his commitment to research and innovation, hossen md sulayman took on the role of a research assistant at chongqing university. in this position, he contributed to various civil engineering projects, focusing on structural analysis and advanced construction methodologies. his work in bridge engineering expanded as he participated in inspections and data analysis of multiple bridges in jiangsu, china, further strengthening his expertise in the field. through his hands-on experience, he developed a deep understanding of structural integrity, maintenance, and optimization techniques crucial for modern infrastructure.

📈 Contributions and research focus

As a dedicated researcher, hossen md sulayman has focused on the intersection of structural engineering and environmental factors. his research on the effect of temperature on bridge modal parameters has provided valuable insights into the durability and stability of continuous rigid frame bridges. his expertise spans advanced concrete and steel structure design, Civil Engineering composite structures, and wind engineering, making significant contributions to the understanding of structural behavior under varying environmental conditions. his work aims to enhance the sustainability and resilience of modern infrastructure through innovative engineering solutions.

🏆 Accolades and recognition

due to his outstanding academic performance and research contributions, hossen md sulayman has gained recognition in the field of civil engineering. he has actively participated in Civil Engineering international conferences, where he has presented his research findings and engaged with global experts. his work in bridge inspections and structural analysis has been highly regarded, and his role as a research assistant at a prestigious university further highlights his dedication and expertise.

📚 Impact and influence

his research and professional activities have had a significant impact on the field of civil engineering, particularly in bridge engineering and structural analysis. by examining the effects of Civil Engineering environmental conditions on structural integrity, he has contributed to improving the safety and longevity of infrastructure projects. his insights are valuable to engineers, researchers, and policymakers working towards sustainable and resilient construction.

🔄 Legacy and future contributions

Hossen md sulayman continues to strive for excellence in civil engineering, with a vision to advance structural design and maintenance strategies. his future contributions are expected to drive innovations in bridge engineering, particularly in developing more adaptive and durable structures. with his expertise in numerical analysis and advanced materials, he is poised to make significant breakthroughs that will shape the future of sustainable infrastructure. through his research and professional endeavors, he aims to leave a lasting impact on the field, inspiring the next generation of engineers and researchers.

Notable Publications 

  • Title: Effect of Temperature on the Modal Parameters of Continuous Rigid Frame Bridge
    Authors: Y Yang, MS Hossen, G Lacidogna, W Xu, I Kawsar, J Sun, S Hossain
    Journal: Developments in the Built Environment

  • Title: SPSVO: A Self-Supervised Surgical Perception Stereo Visual Odometry for Endoscopy
    Authors: J Zhao, Y Luo, Q Li, N Baddour, MS Hossen
    Journal: Robotica

Dr. Zepeng Niu – Mechanical Engineering – Best Researcher Award 

Dr. Zepeng Niu - Mechanical Engineering - Best Researcher Award 

Xi’an University of Architecture &Technology - China 

Author Profile

SCOPUS

Early academic pursuits 🎓

Zepeng Niu embarked on his academic journey at xi'an university of architecture and technology, where he earned a bachelor's degree in engineering in june 2018. his dedication to mechanical and electrical engineering led him to pursue a master’s degree at the same institution later that year. showing exceptional academic promise, he was selected in september 2019 for a direct doctoral program under the supervision of associate professor wang gengxiang. currently in his second year as a phd student, zepeng is delving deeply into the dynamics of flexible multibody systems and collision dynamics.

Professional endeavors 🛠️

During his doctoral studies, zepeng has contributed to advancing knowledge in mechanical and collision dynamics through collaborative research with esteemed professors and researchers. his work emphasizes both theoretical innovation and practical applications, particularly in multibody system dynamics. by engaging with cutting-edge problems in his field, he has positioned himself as a dedicated scholar with a focus on addressing engineering challenges.

Contributions and research focus 🔍

zepeng's research centers on flexible multibody system dynamics and collision dynamics, two critical areas in mechanical engineering. his significant contributions include developing improved analytical models and methodologies to address nonlinear behaviors in granular systems. his work has led to the creation of new Mechanical Engineering coefficients of restitution and enhanced methods like the improved craig–bampton approach, which have wide-ranging applications in durability and performance analysis of mechanical systems.

Accolades and recognition 🏅

zepeng’s contributions have been recognized through several impactful publications in prestigious journals such as mechanism and machine theory and powder Mechanical Engineering technology. his co-authored works introduce groundbreaking models for contact dynamics and analytical approaches to multibody systems. these accomplishments underline his growing reputation in the academic and engineering communities.

Impact and influence 🌍

zepeng's research has a transformative impact on understanding and predicting the behavior of complex mechanical systems. his innovative approaches to collision dynamics and multibody interactions are pivotal in advancing the durability and efficiency of engineered systems. his findings contribute not only to academia but Mechanical Engineering also to industries reliant on precise modeling and analysis.

Legacy and future contributions 🔮

as a promising researcher, zepeng niu is poised to leave a lasting legacy in mechanical engineering. his dedication to solving complex problems in dynamics and his innovative methodologies ensure his work will continue to influence the field. with a strong foundation and a forward-thinking approach, he is set to inspire future advancements in multibody system dynamics and beyond.

Notable Publications 

  • Title: Analysis of Nonphysical Attraction Force and New Coefficient of Restitution Based on a Nonlinear Viscoelastic Contact Model in Cohesionless Granular System
    Authors: Wang, G., Niu, Z., Cheng, F., Pan, Y.
    Journal: Mechanism and Machine Theory, 2024, Vol. 203, Article 105821
  • Title: Improved Craig–Bampton Method Implemented into Durability Analysis of Flexible Multibody Systems
    Authors: Wang, G., Niu, Z., Feng, Y.
    Journal: Actuators, 2023, Vol. 12(2), Article 65

Mr. S. Selvakumaran – Smart Grid and Electric Vehicles -Best Researcher Award

Mr. S. Selvakumaran - Smart Grid and Electric Vehicles -Best Researcher Award

Alagappa Chettiar Government College of Engineering and Technology, Karaikudi - India

Professional Profile

ORCID

🎓 EARLY ACADEMIC PURSUITS

S. Selvakumaran embarked on his academic journey with a Bachelor of Engineering in Electrical and Electronics Engineering from Dhanalakshmi Srinivasan Engineering College, Perambalur, under Anna University, Chennai, in 2007. His pursuit of excellence led him to complete a Master of Engineering in Power Electronics and Drives from Government College of Engineering, Tirunelveli, in 2009. Selvakumaran is currently a Ph.D. candidate at Alagappa Chettiar Government College of Engineering and Technology, Karaikudi, where he focuses on metaheuristic optimization algorithms for green energy applications.

🏛️ PROFESSIONAL ENDEAVORS

Selvakumaran has an extensive teaching career spanning 15 years, primarily at Dhanalakshmi Srinivasan Engineering College, where he served as an Assistant Professor from 2009 to 2020. He is now a full-time research scholar at Alagappa Chettiar Government College of Engineering and Technology. His professional roles include coordinating institutional-level activities such as NBA, NAAC, Exam Cell, and ISO coordination, demonstrating his leadership and organizational skills.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Selvakumaran has made significant contributions to the field of Electrical and Electronics Engineering, particularly in control systems, power electronics, and smart grid technologies. His Ph.D. research on metaheuristic optimization algorithm-based converters for green energy Smart Grid and Electric Vehicles applications highlights his commitment to sustainable energy solutions. He has guided over 80 undergraduate and 15 postgraduate students, fostering the next generation of engineers.

🏅 ACCOLADES AND RECOGNITION

Throughout his career, Selvakumaran has been recognized for his academic and professional excellence. He has played a pivotal role in setting question paper answer keys for Anna University examinations. His research and academic contributions have been acknowledged through Smart Grid and Electric Vehicles various conference presentations, where he has shared his innovative work on topics such as control of induction motors, space vector modulation, and hybrid energy systems.

🌍 IMPACT AND INFLUENCE

Selvakumaran's impact extends beyond the classroom and research lab. His work on smart grid and solar PV systems has practical applications that contribute to the development of sustainable and efficient energy solutions. His involvement in conferences and his role as a mentor have Smart Grid and Electric Vehicles influenced both his peers and students, promoting advancements in electrical and electronics engineering.

🔗 LEGACY AND FUTURE CONTRIBUTIONS

Selvakumaran's legacy is built on his dedication to education, research, and the application of innovative technologies in the field of electrical engineering. His ongoing research and academic endeavors promise to yield further advancements in green energy applications and intelligent control systems. As he continues to contribute to his field, his work will leave a lasting impact on both academia and industry.

NOTABLE PUBLICATIONS

Prof. lijuan Jia – Solid waste resource utilization – Best Researcher Award

Prof. lijuan Jia - Solid waste resource utilization - Best Researcher Award

Yunnan Minzu University - China

AUTHOR PROFILE 

SCOPUS

EARLY ACADEMIC PURSUITS

Lijuan Jia embarked on his academic journey by obtaining a Ph.D. in Engineering, positioning himself as a prominent scholar in his field. His early academic pursuits laid the groundwork for his future contributions to the realm of environmental science and technology.

PROFESSIONAL ENDEAVORS

Transitioning into the professional realm, Jia assumed the role of a Professor and Master's supervisor at Yunnan Minzu University. He has been recognized as a top talent in Yunnan Province, further underscoring his dedication to academic excellence and research leadership.

CONTRIBUTIONS AND RESEARCH FOCUS ON SOLID WASTE RESOURCE UTILIZATION

Jia's research focuses on innovative solutions for environmental challenges in the chemical and metallurgical industries. His work encompasses flue gas desulfurization, denitrification technology, and solid waste resource utilization, addressing critical issues in pollution control and waste management.

IMPACT AND INFLUENCE

Lijuan Jia's research has made a significant impact on environmental science and technology, particularly in the areas of flue gas cleaning and solid waste management. His contributions have led to advancements in pollution control technologies and sustainable resource utilization practices, shaping industry standards and regulatory frameworks.

ACADEMIC CITATIONS

Jia's publications have garnered considerable attention within the scientific community, evident from his substantial citation index. His research on flue gas cleaning, mineral slurry utilization, and waste resource recovery has been widely cited, reflecting the relevance and influence of his work in academia and industry.

LEGACY AND FUTURE CONTRIBUTIONS

Lijuan Jia's legacy lies in his commitment to addressing pressing environmental challenges through innovative research and technology development. Moving forward, his work is poised to continue shaping environmental policy and practice, with a focus on promoting sustainable industrial processes and waste management solutions.

NOTABLE PUBLICATIONS

ZIF-67-derived Co@NC as an efficient catalyst for magnesium sulfite oxidation in the flue gas desulfurization process  2024

Synthesis of Ti3C2Tx nanosheets / ZnO nanowires composite material for NO2 gas sensing  2024

High efficiency removal of NO using waste calcium carbide slag by facile KOH modification  2024

Catalytic hydrolysis of monochlorodifluoromethane over ZnO/ZrO2 catalysts at low temperatures  2024

Enhanced low-temperature selective catalytic reduction (SCR) activity and H2O and SO2 resistance of flower-like  2024