Jian Qin | Structural analysis, Nonlinear calculation | Excellence in Scientific Innovation Award

Prof. Dr. Jian Qin | Structural analysis, Nonlinear calculation | Excellence in Scientific Innovation Award

Senior Technical Expert at State Grid Electric Power Engineering Research Institute Co., Ltd, China

Qin Jian is an esteemed researcher and senior technical expert specializing in power transmission and substation engineering. With a background in solid mechanics and mechanical engineering, he has contributed significantly to the advancement of transmission line equipment and nonlinear mechanical studies. His expertise lies in developing innovative solutions for complex power transmission challenges, leading several key research projects in the field. Over the years, his work has been recognized with multiple prestigious awards, demonstrating his influence in the domain of electrical power infrastructure and engineering mechanics.

Profile

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Education

Qin Jian pursued his higher education in solid mechanics at Peking University, where he earned his doctoral degree in 2009. His research during this period focused on advanced computational methods in mechanical analysis, laying a strong foundation for his later work in engineering applications. Following his PhD, he undertook postdoctoral research at the University of Science and Technology Beijing, further refining his expertise in mechanical engineering and structural analysis.

Experience

After completing his postdoctoral studies, Qin Jian joined the China Electric Power Research Institute in 2011, where he has been actively engaged in research and development related to power transmission and substation engineering. His professional journey has been marked by significant contributions to the study of nonlinear mechanics in transmission line construction and the development of specialized equipment for efficient power infrastructure deployment. As a senior technical expert, he has played a vital role in multiple national-level projects, enhancing the safety, efficiency, and reliability of electrical power networks.

Research Interests

Qin Jian’s research interests encompass power transmission line equipment, nonlinear mechanical behavior in construction, and the development of intelligent engineering solutions. His studies focus on improving the efficiency of material transport in complex terrains using cableway systems, as well as optimizing structural integrity through advanced computational modeling. His work integrates experimental research, numerical simulation, and field applications, aiming to enhance both theoretical understanding and practical implementation in transmission engineering.

Awards

Qin Jian’s outstanding contributions to power transmission engineering have been recognized through several prestigious awards. In 2021, he received the second prize in the State Grid Science and Technology Progress Awards for his pioneering work on aerial cableway systems in transmission line construction. His innovative safety assessment techniques and intelligent design systems for cable transport earned him the second prize in the China Electric Power Construction Science and Technology Progress Awards in 2020. Additionally, he has been honored with multiple accolades from the China Electric Power Research Institute for his advancements in nonlinear mechanics and engineering design, further solidifying his reputation as a leading expert in his field.

Publications

Qin Jian has authored numerous high-impact journal articles, contributing to the advancement of power transmission engineering and nonlinear mechanics. Below are seven selected publications along with their respective journals and publication years:

Qin J., Qiao L., et al. (2025). “Calculation Method and Experimental Research on Strand Breakage in Large Cross-section Conductors Considering Contact Between Strands.” Engineering Failure Analysis.

Qin Jian, Qiao Liang, et al. (2024). “Analysis, Simulation, and Experimental Research on the Mechanisms of Lantern-shaped Strand Defects in the Conductor Construction of Transmission Line.” Structures.

Qin J., Zhang Q. D., Huang K. F. (2011). “Oblique and Herringbone Buckling Analysis of Steel Strip by Spline FEM.” Journal of Iron and Steel Research (International).

Qin J., Zhang Q. D., Huang K. F. (2012). “Nonlinear Spline Finite Element Method for Ribbing of Cold-Rolled Coils.” Journal of Iron and Steel Research (International).

Qin Jian, Xia Yongjun. (2013). “Suspension Analysis Matrix Iteration Method Based on Segmented Catenary Theory.” Journal of Engineering Design.

Qin Jian, Qiao Liang, Jiang Ming, et al. (2019). “Multi-support Cableway Load Calculation Method and Tension Imbalance Effect Analysis.” China Safety Science and Technology Journal.

Qin Jian, Zhang Feikai, Li Qiying, et al. (2022). “Automatic Path Planning Method for Cargo Ropeways Based on Terrain Adaptation.” Journal of Southwest Jiaotong University.

Conclusion

Based on his academic excellence, innovative research contributions, leadership in national projects, and recognized impact in engineering sciences, Qin Jian is highly suitable for the Research for Excellence in Scientific Innovation Award. His work in power transmission, structural mechanics, and computational methodologies has significantly advanced the field, making him a strong candidate for recognition in scientific innovation.

Charly Julien Nyobe | Wood Mechanics | Best Paper Award

Dr. Charly Julien Nyobe | Wood Mechanics | Best Paper Award

Dr. Charly Julien Nyobe – Teacher-researcher at ENSET of Douala, France

Charly Julien Nyobe is a dedicated researcher, educator, and civil engineer with specialized expertise in wood material science, sustainable construction, and structural mechanics. His work focuses on developing sustainable, eco-friendly construction practices, particularly through the innovative use of tropical woods as viable alternatives to traditional materials. Nyobe’s research addresses the mechanical properties, strength classifications, and resilience of timber from the Congo Basin, contributing significantly to the advancement of sustainable building practices in regions rich in tropical forests. His in-depth studies cover topics such as the impact of scale on wood strength, the effect of grain slope on mechanical properties, and the influence of natural variability in wood species. Nyobe has contributed numerous publications that highlight his findings, focusing on factors like vibratory damping, structural reliability, and wood’s response under varying environmental conditions. His research, widely cited in prominent journals, emphasizes the importance of combining traditional materials with advanced engineering methods to create resilient, environmentally friendly construction solutions. Beyond research, Nyobe is an active educator at the University of Douala, where he mentors students and supervises projects that explore innovative uses of wood in civil engineering. His role as a member of the Groupe De Recherche Science du Bois (GDR) in France further underscores his commitment to promoting sustainable materials in engineering. Through his work in academia, industry, and collaborative research, Nyobe has established himself as a leader in sustainable civil engineering, demonstrating that tropical wood, when combined with modern engineering approaches, can serve as a durable, high-performance construction material. His contributions continue to drive awareness of the potential of sustainable materials in civil engineering, inspiring new research and practical applications that align with environmental stewardship and sustainable development goals.

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Education

Charly Nyobe’s academic journey is marked by a series of high achievements and specialization in civil engineering. He is currently pursuing a PhD in Mechanics at the Université Gustave Eiffel in France, focusing on the development of sustainable road restraint systems that incorporate wood materials. His first PhD, earned in 2023 from the École Nationale Supérieure Polytechnique de Yaoundé at the University of Yaoundé I, delved into multi-scale resistance classification of Congo Basin timber, earning him top honors. Nyobe also holds a Master’s in Engineering Science with a specialization in Civil Engineering from the University of Douala, where he conducted pioneering work on the mechanical resistance of Congo Basin wood, specifically the Okan species. His academic foundation was further strengthened by his undergraduate studies at the Ecole Normale Supérieure d’Enseignement Technique de Douala, where he focused on corrosion in reinforced concrete structures.

Professional Experience

Nyobe’s professional experience spans over a decade, during which he has taught and mentored students at various educational institutions in Cameroon. Since 2018, he has served as a faculty member in the Civil Engineering department at the Ecole Normale Supérieure d’Enseignement Technique (ENSET), University of Douala. Prior to this, he taught at the Lycée Polyvalent de Bonabéri in Douala, where he developed and implemented curricula designed to improve student understanding of structural engineering and construction technology. Additionally, Nyobe has served as a visiting lecturer at the École Supérieure de La Salle in Douala and the Institute of Technology in Douala, sharing his expertise with aspiring civil engineers. His extensive experience in education has equipped him with the skills to communicate complex engineering concepts effectively and foster an environment conducive to learning and innovation.

Research Interests

Charly Nyobe’s research interests are rooted in civil engineering and sustainability, with a particular focus on wood material science, structural dynamics, and impact mechanics. His ongoing doctoral research explores innovative uses of wood in road restraint systems, with an emphasis on the durability and resilience of timber under mechanical stress. Additionally, Nyobe is deeply invested in the characterization of tropical woods from the Congo Basin, investigating their potential as sustainable alternatives in construction. He employs both experimental and numerical methods to study the dynamic behavior of materials, particularly in applications where mechanical strength and material sustainability intersect. His work not only promotes eco-friendly construction practices but also contributes valuable insights into the mechanics of tropical woods, encouraging the use of indigenous resources in modern engineering.

Awards

Nyobe’s academic excellence and contributions to civil engineering research have earned him significant recognition. His PhD thesis at the École Nationale Supérieure Polytechnique de Yaoundé received the distinction of “Très Honorable” by a unanimous jury, acknowledging his groundbreaking work in the multi-scale classification of Congo Basin timber. He has also received “mention Très Bien” for both his Master’s and undergraduate thesis projects, reflecting his consistent high performance and dedication to quality research. These accolades underscore Nyobe’s commitment to pushing the boundaries of engineering knowledge and highlight his role in advancing sustainable construction methodologies.

Publications

Nyobe, C. J., Nyobe, N. S., Nkibeu, J. B., Oum Lissouck, R., & Ayina Ohandja, L. M. (2024). “Effect of slope of grain on mechanical properties of some tropical wood species.” Wood Material Science & Engineering, 1–7.
Biyo’o, R., Biwole, A. B., Moutou Pitti, R., Nyobe, C. J., et al. (2024). “Mode I cracking of three tropical species from Cameroon.” Wood Material Science & Engineering, 1–10.
Bertin, N., Nyobe, C., et al. (2023). “A Review on Methods for Determining the Vibratory Damping Ratio.” Open Journal of Civil Engineering, 13, 199-209.
Nyobe, C. J., Lissouck, R. O., Ayina Ohandja, L. M., & Emmanuel, Y. (2022). “Variability of the mechanical strength of Congo Basin timbers.” Wood Material Science & Engineering, 17(3), 210–220.

Conclusion

Charly Julien Nyobe’s work in civil engineering and wood material science embodies a commitment to sustainable development and innovation. His research is instrumental in promoting eco-friendly construction practices by exploring the properties of local wood species, with particular attention to their mechanical strength and resilience. Nyobe’s achievements in education, research, and publication reflect a deep understanding of both the theoretical and practical aspects of engineering. His contributions are shaping the field of civil engineering, particularly within regions rich in tropical forests, and underscore the potential of natural resources in addressing modern engineering challenges. As a nominee for the award, Nyobe exemplifies the qualities of a visionary researcher dedicated to sustainable advancements in engineering.