Dr. Jingwei Tian – Civil engineering – Best Researcher Award

Dr. Jingwei Tian - Civil engineering - Best Researcher Award

Harbin Institute of technology - China

Author Profile 

GOOGLE SCHOLAR 

🎓 Early academic pursuits

Jingwei tian embarked on his academic journey in the field of civil engineering, developing a strong foundation in engineering mechanics. from september 2017 to september 2019, he pursued a master's degree in structural engineering at the school of civil engineering, harbin institute of technology (hit), under the guidance of prof. jing zhong. his master's dissertation focused on the "preparation and corrosion resistance of graphene oxide composite coatings," highlighting his early interest in advanced materials and protective technologies. he continued his academic progression by obtaining a doctoral degree in engineering mechanics from the same institution (sep. 2019 – dec. 2023), where he worked under prof. guijun xian on the topic: "preparation and performance study of anti-wear and corrosion-resistant epoxy resin matrix composites." his strong foundation in mechanics and materials plays an indirect but pivotal role in power electronics, especially in material insulation and thermal management systems.

🧑‍🏫 Professional endeavors

Following the successful defense of his doctoral thesis, jingwei tian commenced his career as a lecturer and postdoctoral researcher at the school of civil engineering, hit, in january 2024, under the mentorship of prof. huigang xiao. he actively contributes to multiple national and institutional-level research projects, showcasing a balanced mix of academic and applied research. his role as both a researcher and an educator allows him to mentor the next generation while pushing the boundaries in advanced composites, which are increasingly finding cross-applications in fields like aerospace and power electronics infrastructure.

🔬 Contributions and research focus

Jingwei tian’s research focuses on high-performance composite materials, including epoxy resin matrix composites, carbon fiber reinforced polymers (cfrps), and graphene oxide coatings. his work addresses critical challenges such as anti-wear performance, corrosion resistance, and long-term degradation in harsh environments. his projects span national importance, including Civil engineering studies funded by the national natural science foundation of china and the national key research and development programs. currently, he is leading a project on the damage self-healing of carbon fiber composites, which holds immense potential for applications in smart infrastructure and power electronics casing technologies where structural integrity is vital.

🌍 Impact and influence

The research contributions of jingwei tian play a significant role in enhancing the durability, safety, and sustainability of civil engineering materials. his investigations into corrosion-resistant and self-healing materials impact various industries, from marine engineering to smart composites in power electronics cooling and protection systems. by participating in high-stake national-level research projects, his work influences policy formulation and industrial practices. through collaboration with senior academics and national laboratories, his influence extends across Civil engineering academia and industry alike.

📚 Academic citations and recognitions

While early in his postdoctoral career, jingwei tian’s scholarly output is embedded in some of china’s leading research initiatives. he is a contributing author to projects that have garnered Civil engineering national attention and funding worth millions of rmb. his master's and doctoral theses are widely referenced in materials science discussions, and his involvement in collaborative projects with renowned institutions like sichuan university enhances his research visibility and citation potential.

🔭 Legacy and future contributions

Jingwei tian’s work lays the groundwork for long-lasting contributions in the realm of high-performance civil materials. his current leadership in developing self-healing carbon fiber composites positions him to influence future generations of engineers and materials scientists. he aims to further integrate smart material systems into infrastructure design, ultimately contributing to the broader field of sustainable construction and materials engineering. in the coming years, his interdisciplinary approach may bridge gaps between civil engineering, environmental sustainability, and materials for emerging sectors such as next-gen power electronics.

Notable Publications 

  1. Title: Thin nacre-biomimetic coating with super-anticorrosion performance
    Author(s): Y. Zhang, J. Tian, J. Zhong, X. Shi
    Journal: ACS Nano

  2. Title: Reciprocating friction and wear performances of nanometer sized‐TiO₂ filled epoxy composites
    Author(s): J. Tian, C. Li, G. Xian
    Journal: Polymer Composites

  3. Title: Friction behaviors and wear mechanisms of multi-filler reinforced epoxy composites under dry and wet conditions: Effects of loads, sliding speeds, temperatures, water lubrication
    Author(s): J. Tian, X. Qi, C. Li, G. Xian
    Journal: Tribology International

  4. Title: Mussel-inspired fabrication of an environment-friendly and self-adhesive superhydrophobic polydopamine coating with excellent mechanical durability, anti-icing and self-cleaning
    Author(s): J. Tian, X. Qi, C. Li, G. Xian
    Journal: ACS Applied Materials & Interfaces

  5. Title: Mechanical properties evaluation of glass fiber reinforced thermoplastic composite plate under combined bending loading and water immersion
    Author(s): G. Xian, P. Zhou, C. Li, S. Dong, H. Du, J. Tian, R. Guo, Z. Peng, Z. Zhang, T. He
    Journal: Construction and Building Materials

Mr. Alioune Nacro –  Engineering  –  Best Researcher Award

Mr. Alioune Nacro -  Engineering  -  Best Researcher Award

Laboratoire de mathématiques Nicolas Oresme - France 

Author Profile

ORCID 

🎓 Early academic pursuits

Alioune Nacro embarked on his academic journey with a strong foundation in engineering and mechanics. he pursued a diplôme universitaire de technologie (dut) in génie industriel at sn-citec, where he gained hands-on experience in industrial processes and maintenance. building on this, he advanced to a licence 2 in génie électrique et informatique industrielle (geii) at the institut des sciences et techniques de valenciennes. his thirst for knowledge led him to the prestigious esix at the université de caen, where he completed his diplôme d’ingénieur in mécatronique. his academic path was further enriched with a master’s degree in mécanique at the université de caen, ultimately progressing to doctoral studies in mécanique des solides, génie mécanique, productique, transport et génie civil.

🌟 Professional endeavors

Alioune Nacro has built an impressive career through a series of impactful internships and research positions. he gained industrial experience at décathlon cagny, where he managed stock and logistics. later, at global technology, he contributed to the design and implementation of photovoltaic cells on drones, optimizing their energy autonomy. at dracula technologies, he integrated energy harvesting into connected objects and developed innovative electronic systems. his most recent internship at laboratoire nicolas oresme focused on the modeling of raw bricks reinforced with natural fibers, utilizing finite element analysis and fast fourier transform methods.

🧠 Contributions and research focus

Alioune’s research is centered on mechanics, material sciences, and renewable energy solutions. his doctoral work delves into the multiscale fe2 elastoviscoplastic analysis of composite structures, a theoretical and computational study that enhances the understanding of material behavior under different conditions. his expertise extends to numerical simulations, Engineering computational fluid dynamics (cfd), and fluid-structure interaction calculations, employing advanced software such as castem, code aster, and openfoam. his contributions in energy harvesting, particularly the autonomous lighting system powered by renewable energy, highlight his commitment to sustainable technology.

🏆 Accolades and recognition

Alioune’s academic and professional journey has been marked by significant achievements. his innovative research in material science and renewable energy has garnered attention within Engineering academic circles. his hands-on contributions to energy-efficient technologies and advanced modeling techniques have positioned him as a rising researcher in mechanical engineering and  applied physics. his ability to bridge theoretical research with practical applications has been recognized by industry professionals and academic mentors alike.

💪 Impact and influence

Alioune’s work has had a profound impact on both the academic and industrial sectors. his research in composite material analysis provides valuable insights for structural engineers and Engineering material scientists. his contributions to energy harvesting and autonomous systems play a crucial role in the development of smart and self-sufficient technologies. through his various projects, he has influenced the integration of renewable energy solutions into real-world applications, setting a precedent for sustainable innovation.

🔬 Legacy and future contributions

As a dedicated researcher, alioune nacro is poised to leave a lasting legacy in the fields of mechanical engineering and renewable energy. his work in numerical simulations and composite material analysis continues to shape future advancements in material science and structural engineering. with his expertise in energy harvesting and smart technology integration, he is expected to contribute to groundbreaking solutions that enhance energy efficiency and sustainability. his future endeavors in academia and industry will likely inspire the next generation of engineers and researchers in these dynamic fields.

Notable Publications 

Title: Experimental and modeling study on earthen sediment-based bricks with and without flax fibers: a finite element analysis
Author(s): Alioune Nacro, Daniel Levacher, Mazhar Hussain
Journal: Results in Engineering, 2025

Mr. Ibna Kawsa – Structure improvement – Young Scientist Award

Mr. Ibna Kawsa - Structure improvement - Young Scientist Award

Chongqing University - China 

Author Profile 

GOOGLE SCHOLAR  

🎓 Early academic pursuits

Ibna Kawsar began his academic journey with a bachelor's degree in mechanical design, manufacturing, and automation from chongqing jiaotong university, where he graduated with an impressive gpa of 89.00. his undergraduate years were marked by a strong interest in machinery and equipment design, with a thesis focused on the innovative development of an electric battery lift table for efficient handling in electric vehicles. driven by a passion for mechanical engineering and vehicle safety, he advanced his studies with a master's degree in mechanical and vehicle engineering at chongqing university, achieving a remarkable gpa of 89.40. his master's thesis centered on enhancing the side-impact safety of battery pack systems, reflecting his growing dedication to crashworthiness and energy-absorbing structures.

🏭 Professional endeavors

Ibna has actively contributed to the field of vehicle safety through his role as a research assistant at the vehicle dynamics and intelligent control laboratory in chongqing, china. since november 2023, he has been deeply involved in crash simulations and impact analysis using advanced software tools like abaqus and hypermesh. his work focuses on improving electric vehicle (ev) battery safety and optimizing structural designs to withstand crashes and external impacts. in addition to his research, ibna has taken on responsibilities as a reviewer for the annals of robotics and automation since january 2024, where he evaluates scholarly articles related to robotics, automation, and structural optimization, demonstrating his commitment to academic excellence.

🧠 Contributions and research focus

Ibna’s research primarily revolves around crashworthiness, structural optimization, and battery safety in electric vehicles. as the first author of significant studies under review, he has Structure improvement proposed innovative designs that achieved a 45% reduction in shell intrusion during battery crash simulations, with findings submitted to the european journal of mechanics a/solids. he has also contributed a comprehensive review on the mechanical reliability of ev batteries under vibration, shock, and collision scenarios, currently under review in etransportation. his work has explored the potential of multi-cell square tube structures in reducing deformation by up to 48%, showcasing his expertise in designing safer, impact-resistant battery systems for automotive applications.

🏅 Accolades and recognition

Throughout his academic and professional journey, ibna has been recognized for his technical skills and impactful research. his consistent academic excellence, reflected in high gpas during both his bachelor's and master's programs, underscores his dedication to mastering complex engineering concepts. his selection as a reviewer for an international journal at an early career Structure improvement stage further highlights his standing in the scientific community and his contributions to the advancement of knowledge in robotics and structural safety.

🌍 Impact and influence

Ibna's work is contributing to the future of safer electric vehicles by addressing critical challenges in battery crashworthiness and structural durability. his research outcomes have the potential Structure improvement to significantly enhance vehicle safety standards, minimize damage during collisions, and protect passengers by optimizing the design of battery pack systems. through his involvement in peer review and scholarly publishing, he is also influencing the broader scientific discourse around automation and mechanical reliability, supporting innovation in automotive engineering.

🚀 Legacy and future contributions

Looking ahead, ibna aspires to deepen his research through a ph.d. program focused on crashworthiness and design optimization. his goal is to pioneer high-performance safety systems that not only meet but exceed current industry standards, driving forward the development of next-generation electric vehicles. by integrating advanced simulation techniques and innovative structural solutions, he aims to leave a lasting impact on automotive safety research, ensuring that future vehicles are not only more efficient but also fundamentally safer for all road users.

Notable Publications 

1️⃣ Title: Trajectory optimization of an electric vehicle with minimum energy consumption using inverse dynamics model and servo constraints
Authors: C Min, Y Pan, W Dai, I Kawsar, Z Li, G Wang
Journal: Mechanism and Machine Theory, 2023


2️⃣ Title: Deep-learning-based inverse structural design of a battery-pack system
Authors: X Zhang, Y Xiong, Y Pan, D Xu, I Kawsar, B Liu, L Hou
Journal: Reliability Engineering & System Safety, 2023


3️⃣ Title: Enhanced traffic safety and efficiency of an accelerated LC decision via DNN-APF technique
Authors: H Du, Y Pan, I Kawsar, Z Li, L Hou, A Glowacz
Journal: Measurement, 2023


4️⃣ Title: Combined recurrent neural networks and particle-swarm optimization for sideslip-angle estimation based on a vehicle multibody dynamics model
Authors: Y Sun, Y Pan, I Kawsar, G Wang, L Hou
Journal: Multibody System Dynamics, 2024


5️⃣ Title: Longitudinal Predictive Control for Vehicle-Following Collision Avoidance in Autonomous Driving Considering Distance and Acceleration Compensation
Authors: HDYP Shutong Yin, Chunlin Yang, Ibna Kawsar
Journal: MDPI (Research Progress on Intelligent Electric Vehicles)

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

Prof. Ma Guangyi – mechanical engineering – Best Researcher Award

Prof. Ma Guangyi - mechanical engineering - Best Researcher Award

dalian university of technology - China 

Author Profile 

SCOPUS 

ORCID 

Early academic pursuits 🎓

Ma Guangyi embarked on his academic journey with a strong passion for mechanical engineering and advanced manufacturing technologies. his early education laid a solid foundation in engineering principles, leading him to pursue higher studies in the field. with an exceptional academic record, he advanced his expertise through rigorous research and innovation, eventually earning a doctoral degree. his dedication to academic excellence and scientific inquiry set the stage for his future contributions to additive manufacturing and nanomanufacturing.

Professional endeavors 🏛️

Throughout his career, ma guangyi has held esteemed positions in academia and industry, shaping the future of mechanical engineering and advanced manufacturing. as a professor and doctoral supervisor, he has mentored numerous researchers, fostering the next generation of scientists and engineers. his role as vice chairman of the additive manufacturing branch of the liaoning mechanical engineering society reflects his leadership in the field. additionally, his membership in national and international technical committees highlights his influence in standardizing and advancing additive and remanufacturing engineering practices.

Contributions and research focus 🔍

Ma Guangyi’s research is centered on additive manufacturing, remanufacturing engineering, and laser processing technologies. his work integrates cutting-edge nanomanufacturing mechanical engineering techniques to enhance material performance and production efficiency. as a key contributor to the development of advanced coatings and rare metal materials, his research bridges the gap between theoretical advancements and practical applications. by pushing the boundaries of laser processing and manufacturing innovations, he has significantly impacted industrial and scientific communities.

Accolades and recognition 🏆

Ma Guangyi’s contributions have earned him widespread recognition and prestigious accolades. he has been selected into the world’s top 2% scientists list for both 2023 and 2024, an mechanical engineering acknowledgment of his outstanding impact on global research. he has received numerous awards, including one gold medal at an invention exhibition, multiple first and second prizes in provincial and ministerial science and technology awards, and significant honors in natural science paper competitions. his editorial roles in leading journals such as "coatings" and "nanomanufacturing and metrology" further underscore his expertise and influence in the field.

Impact and influence 🌍

Ma Guangyi’s research has had a profound impact on the advancement of additive manufacturing and laser processing technologies. his work has contributed to the development of high- performance materials, efficient manufacturing processes, and sustainable engineering solutions. as a member of key scientific committees, he plays a vital role in shaping industry standards mechanical engineering and promoting technological innovations. his efforts in mentoring young researchers and collaborating with global experts have amplified his influence, fostering a new wave of scientific breakthroughs.

Legacy and future contributions 🚀

Ma Guangyi’s legacy is built on his unwavering commitment to scientific excellence and technological innovation. his pioneering work in additive manufacturing and remanufacturing engineering continues to inspire researchers worldwide. as he advances his research, his focus remains on bridging theoretical knowledge with practical applications, ensuring sustainable and efficient manufacturing solutions for future generations. his leadership in academia and industry solidifies his role as a key figure in the evolution of mechanical engineering and nanomanufacturing.

Notable Publications 

  1. Title: Direct additive manufacturing of melt growth Al₂O₃-ZrO₂ functionally graded ceramics by laser directed energy deposition
    Authors: Wu, D.; Shi, J.; Niu, F.; Ma, G.; Zhou, C.; Zhang, B.
    Journal: Journal of the European Ceramic Society
  2. Title: Effect of low-temperature cooling on corrosion properties of laser welding Hastelloy C-276/304 stainless steel with filler wire
    Authors: Cheng, B.; Wu, D.; Yue, K.; Ma, G.; Niu, F.
    Journal: Optics and Laser Technology
  3. Title: Effect of weaving frequency on pulsed laser weaving welding of thin 5052 aluminum alloy sheet
    Authors: Niu, F.; Tang, B.; Yue, K.; Liu, D.; Ma, G.; Wu, D.
    Journal: International Journal of Advanced Manufacturing Technology
  4. Title: Formation mechanism of Al-Zn-Mg-Cu alloy fabricated by laser-arc hybrid additive manufacturing: Microstructure evaluation and mechanical properties
    Authors: Liu, D.; Wu, D.; Wang, R.; Shi, J.; Niu, F.; Ma, G.
    Journal: Additive Manufacturing
  5. Title: Intermetallic regulation mechanism of inconel 718/Ti6Al4V composite by novel follow-up ultrasonic assisted laser additive manufacturing
    Authors: Wu, D.; Song, C.; Di, T.; Niu, F.; Ma, G.
    Journal: Composites Part B: Engineering

Prof. Ji Chen – Structural engineering – Outstanding Contributions in Academia Award

Prof. Ji Chen - Structural engineering - Outstanding Contributions in Academia Award

Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences - China 

Author Profile

SCOPUS 

Early academic pursuits 🎓

Ji Chen's academic journey began with a Bachelor’s degree in Mining Engineering from the Hebei Institute of Building Science and Technology, China (1995–1999). He further pursued his passion for geological and physical sciences, earning a Master’s in Geological Engineering from Jilin University (1999–2002). His academic foundation was solidified with a Doctorate in Physical Geography from the Graduate School of the Chinese Academy of Sciences (2002–2007), which laid the groundwork for his future research in frozen soils and environmental engineering.

Professional endeavors 🏢

Dr. Chen is currently the Director of the Beiluhe National Observation and Research Station on Frozen Soil at the Northwest Institute of Eco-Environment and Resources, part of the Chinese Academy of Sciences. His role involves overseeing cutting-edge research on the environmental challenges posed by permafrost and frozen soil, particularly in relation to infrastructure projects in cold regions. He has also led various industry consultancy projects, such as studying the impact of glacier-frozen soil and snow cover on the Tibet Railway.

Contributions and research focus 🌍

Dr. Chen has made significant strides in studying the effects of frozen soils in alpine and plateau regions. His research on the long-term load test pile group in permafrost areas and the influence of glacier-frozen soil on major infrastructure projects demonstrates his commitment to bridging environmental science with Structural engineering practical applications. His projects focus on improving construction and environmental sustainability in freezing regions, with emphasis on railway infrastructure and mining areas.

Publications and scholarly impact 📚

Dr. Chen has published over 40 papers in prominent SCI journals, making substantial contributions to the understanding of permafrost and its interaction with engineering projects. His research has been featured in journals such as Cold Regions Science and Technology, Computers, Environment and Urban Systems, and The Structural engineering Journal of Geophysical Research. His scholarly work has shaped ongoing global discussions on the challenges of frozen soils in construction and ecological management.

Accolades and recognition 🏅

Dr. Chen’s expertise has been widely recognized within the scientific community. He has received several prestigious awards and has been appointed to editorial boards of leading journals in his field. His contributions have been pivotal in advancing the research on frozen soils, particularly in relation to environmental Structural engineering challenges and engineering solutions in high-altitude and cold regions. Additionally, his involvement in national key research and development projects underscores his stature as a leading innovator.

Legacy and future contributions 🌱

Looking forward, Dr. Chen’s work promises to leave a lasting impact on both environmental science and engineering. His involvement in major national projects, such as the Integration of Monitoring and Data Fusion Technology for Hydroecological Temporal and Spatial Changes of Frozen Soils in Alpine Mining Areas, positions him at the forefront of developing sustainable solutions for cold-region construction. His future contributions are poised to shape infrastructure projects in some of the most challenging environments on Earth, ensuring that development in these regions is both sustainable and safe.

Notable Publications 

  • Title: Degradation of warm permafrost and talik formation on the Qinghai‒Tibet Plateau in 2006–2021
    Authors: Mei, Q.-H., Chen, J., Liu, Y.-Q., Wang, J.-C., Zhao, Y.-J.
    Journal: Advances in Climate Change Research, 2024, 15(2), pp. 275–284
  • Title: Advances in retrogressive thaw slump research in permafrost regions
    Authors: Li, Y., Liu, Y., Chen, J., Dong, T., Zhao, Y.
    Journal: Permafrost and Periglacial Processes, 2024, 35(2), pp. 125–142
  • Title: Long-term responses of permafrost to the dual impacts of climate warming and engineering disturbance along the Qinghai-Tibet Highway
    Authors: Jiang, G., Fu, Z., Gao, S., Liu, Y., Wu, Q.
    Journal: Cold Regions Science and Technology, 2024, 220, 104135
  • Title: Effect of Orientation and Skylight Area Ratio on Building Energy Efficiency in the Qinghai–Tibet Plateau
    Authors: Wang, Y., Qin, H., Wang, Y., Zhang, S., Song, H.
    Journal: Buildings, 2024, 14(3), 755
  • Title: Aboveground Biomass Mapping and Analysis of Spatial Drivers in the Qinghai–Xizang Plateau Permafrost Zone: A Case Study of the Beilu River Basin
    Authors: Wu, Y., Zhao, J., Chen, J., Zhao, Y., Miao, Z.
    Journal: Plants, 2024, 13(5), 686

Ms. Thi Sinh Vo – Mechanical Engineering – Excellence Award (Any Scientific field)

Ms. Thi Sinh Vo - Mechanical Engineering - Excellence Award (Any Scientific field)

Sungkyunkwan University - South Korea

Author Profile

ORCID 

Early academic pursuits 🎓

Thi Sinh Vo embarked on his academic journey with a Bachelor of Science in Materials Science from Vietnam National University Ho Chi Minh City – University of Science, graduating in 2014. His passion for materials led him to further his studies, earning a Master of Science in Chemical Engineering from Daegu University in 2018. This strong educational foundation provided him with a deep understanding of materials science and engineering principles, paving the way for his successful research career.

Professional endeavors 💼

In 2023, Thi Sinh Vo achieved a significant milestone by earning his Ph.D. in Mechanical Engineering from Sungkyunkwan University in South Korea. Throughout his academic career, he has demonstrated a commitment to interdisciplinary collaboration, integrating materials science with engineering, organic chemistry, and environmental science. Thi has participated in various research projects and has taken on mentorship roles, guiding junior researchers in their academic pursuits and fostering a collaborative research environment.

Contributions and research focus 🔍

Thi Sinh Vo’s research is centered on polymer-composite materials, with a particular emphasis on functional composites and structures for electromechanical and electrochemical sensors, as well as water and wastewater treatment. His expertise in synthesis and characterization of advanced materials enables him to address Mechanical Engineering complex challenges in these areas. Thi’s work is characterized by innovative approaches and novel techniques that contribute significantly to the advancement of materials science and engineering.

Accolades and recognition 🏅

Thi Sinh Vo has garnered recognition for his outstanding contributions to the field of materials science, reflected in his impressive publication record of over 35 peer-reviewed articles and 500+ citations on Google Scholar. His academic excellence and impactful research have earned him several awards that acknowledge his Mechanical Engineering dedication and significant contributions to the discipline. These accolades underscore his commitment to advancing knowledge and addressing critical issues in materials science.

Impact and influence 🌍

The impact of Thi Sinh Vo’s research extends beyond academia, influencing various sectors, including environmental science and engineering. His work on functional composites and sensors has the potential to revolutionize water treatment processes and enhance the performance of electromechanical devices. By bridging the Mechanical Engineering gap between materials science and engineering, Thi’s contributions play a vital role in developing sustainable solutions to pressing global challenges.

Legacy and future contributions 🔮

As Thi Sinh Vo continues his research journey, he is poised to leave a lasting legacy in the field of materials science. His passion for cutting-edge research and commitment to exploring novel techniques will drive future contributions that address complex challenges in polymer-composite materials and their applications. Thi's dedication to mentorship and collaboration ensures that his influence will resonate within the academic community and beyond, inspiring future generations of researchers.

Notable Publications 

  • Title: A Comprehensive Review of Chitosan-Based Functional Materials: From History to Specific Applications
    Authors: Thi Sinh Vo; Pyone Pyone Chit; Vu Hoang Nguyen; Trung Hoang; Khin Moe Lwin; Tran Thi Bich Chau Vo; Byounghyun Jeon; Soobean Han; Jaehan Lee; Yunjeong Park et al.
    Journal: International Journal of Biological Macromolecules
    Publication Date: November 2024
    DOI: 10.1016/j.ijbiomac.2024.136243
  • Title: A Comprehensive Review of Laser Processing-Assisted 2D Functional Materials and Their Specific Applications
    Authors: Thi Sinh Vo; Byounghyun Jeon; Van Phuc Thien Nguyen; Trung Hoang; Khin Moe Lwin; Soobean Han; Tran Thi Bich Chau Vo; Kyunghoon Kim
    Journal: Materials Today Physics
    Publication Date: August 2024
    DOI: 10.1016/j.mtphys.2024.101536
  • Title: Recent Developments of Nano-Enhanced Composite Membranes Designed for Water/Wastewater Purification—A Review
    Authors: Thi Sinh Vo; Khin Moe Lwin; Kyunghoon Kim
    Journal: Advanced Composites and Hybrid Materials
    Publication Date: August 2024
    DOI: 10.1007/s42114-024-00923-5
  • Title: Recent Trends of Bioanalytical Sensors with Smart Health Monitoring Systems: From Materials to Applications
    Authors: Thi Sinh Vo; Trung Hoang; Tran Thi Bich Chau Vo; Byounghyun Jeon; Vu Hoang Nguyen; Kyunghoon Kim
    Journal: Advanced Healthcare Materials
    Publication Date: July 2024
    DOI: 10.1002/adhm.202303923
  • Title: 3D Porous Sponge-Like Sensors Prepared from Various Conductive Nanohybrids-Filled Melamine Sponge Toward Human Motion Detections
    Authors: Thi Sinh Vo; Truong Sinh Nguyen; Seung-Hyun Lee; Kyunghoon Kim
    Journal: Journal of Materials Research and Technology
    Publication Date: May 2024
    DOI: 10.1016/j.jmrt.2024.06.010

Assoc Prof Dr. Hessam Ghasemnejad – Composite Structures – Best Researcher Award

Assoc Prof Dr. Hessam Ghasemnejad - Composite Structures - Best Researcher Award

Cranfield University - United Kingdom

Author Profile 

SCOPUS

ORCID

Early academic pursuits 🎓

Hessam Ghasemnejad embarked on his academic journey with a passion for aerospace and composite structures. he earned a ph.d. in composite structures from kingston university, where his research laid the foundation for his future work in lightweight and durable materials. his academic background prepared him to tackle complex engineering challenges while emphasizing sustainability and safety in structural designs.

Professional endeavors 💼

with over 15 years of experience in higher education, hessam has made a significant mark as a professor, senior lecturer, and reader in aerospace structures. his career began at kingston university, where he specialized in composites, followed by cranfield university, where he was promoted from senior lecturer to reader. his roles have involved developing innovative course materials, leading research programs, and securing industrial r&d projects. he is currently a reader in aerospace structures at cranfield university.

Contributions and research focus 🔍

Hessam’s research focuses on lightweight and composite structures, aiming to reduce carbon footprints while ensuring the safety of engineering applications. his work in developing cutting-edge materials for aerospace applications has earned him prestigious research grants. he has also Composite Structures supervised numerous ph.d. students and postdoctoral researchers, contributing significantly to the field's advancement through research on composite materials and structures.

Accolades and recognition 🏅

over his academic career, hessam has been recognized for his outstanding contributions to the field. he has secured multiple research grants, presented at international seminars and workshops, and published extensively in peer-reviewed journals. his work in composite materials and Composite Structures lightweight structures has been widely acknowledged in both academic and industrial settings.

Impact and influence 🌍

hessam’s work has had a global impact, particularly in the aerospace and engineering sectors. his research has contributed to meeting crucial carbon reduction targets while maintaining structural integrity and safety in engineering applications. by integrating sustainability into Composite Structures engineering, hessam’s influence extends beyond academia, impacting real-world engineering challenges and solutions.

Legacy and future contributions 🔮

as a leading figure in aerospace and composite structures, hessam ghasemnejad’s legacy lies in his dedication to both teaching and research. his mentorship of future engineers and researchers ensures that his innovative approaches to sustainability and structural safety will continue to influence the field. his future contributions will undoubtedly focus on advancing lightweight, sustainable materials that address the pressing challenges of modern engineering.

Notable Publications 

Assoc Prof Dr. Shidvash Vakilipour – Engineering – Best Researcher Award

Assoc Prof Dr. Shidvash Vakilipour - Engineering - Best Researcher Award

University of Tehran - Iran

Professional Profile

SCOPUS 

ORCID

Early Academic Pursuits

Shidvash Vakilipour's academic journey began with a strong focus on mechanical engineering, obtaining a B.Sc. from Sharif University of Technology in September 2000. He further specialized in aerodynamic engineering with an M.Sc. from Tarbiat Modares University, completed in January 2003. His pursuit of advanced knowledge led him to earn a Ph.D. in Power and Propulsion from Sharif University of Technology in September 2008. This academic background laid the foundation for his expertise in computational fluid dynamics, thermo-fluid science, and propulsion systems.

Professional Endeavors

Vakilipour's professional career is marked by significant academic and research positions. He is an Associate Professor at the College of Interdisciplinary Science and Technology, University of Tehran, where he also served as Executive Vice President. His experience includes a post-doctoral research fellowship at the University of Manitoba, where he contributed to the Computational Thermo-Fluid Science Lab. His roles have allowed him to mentor graduate students and lead significant research projects in computational fluid dynamics and thermo-fluid sciences.

Contributions and Research Focus

Vakilipour has made notable contributions to computational thermo-fluid science, focusing on numerical simulations of multi-phase flows, aero-thermal flow calculations in turbomachinery, turbulence flow modeling, and molecular dynamics simulations. His research extends to power and propulsion systems, Engineering including engine condition trend monitoring and performance enhancement of gas turbine-based power plants. He is also involved in renewable energy technologies, such as wind turbine blade design and combustion modeling for sustainable energy applications. His work is supported by extensive use of scientific computing software like OpenFOAM, Fluent, and CFX.

Accolades and Recognition

Vakilipour's achievements include membership in the Canadian Society for Mechanical Engineering and a post-doctoral research fellowship at the University of Manitoba. He founded The Center for High Performance Computing at the University of Tehran, Engineering demonstrating his leadership in advancing computational research infrastructure. His role as a visiting researcher at the University of Manitoba underscores his international recognition and collaboration in the field of mechanical engineering.

Impact and Influence

Vakilipour's research has had a significant impact on the fields of thermo-fluid dynamics and propulsion systems. His work on numerical simulations and turbulence modeling has contributed to advancements in the efficiency and performance of engineering systems. His academic contributions are further amplified by his role in mentoring Ph.D. and M.Sc. students, guiding their research in complex fluid dynamics and energy systems. His publications and collaborations reflect his influence on both the academic community Engineering and industry applications.

Legacy and Future Contributions

Shidvash Vakilipour's legacy is characterized by his dedication to advancing computational and experimental methods in mechanical engineering. His ongoing research projects, such as the development of interface tracking methods for two-phase flows and the aerodynamic assessment of wind turbine airfoils, promise to push the boundaries of current engineering knowledge. His future contributions are anticipated to further enhance the understanding and application of thermo-fluid dynamics in renewable energy and propulsion systems.

NOTABLE PUBLICATIONS

A fully coupled ALE interface tracking method for a pressure-based finite volume solver  2021(5)

Numerical study of longitudinal vein effects on the aerodynamic characteristics of a corrugated bio-airfoil  2021(2)

Inverse Designing Airfoil Aerodynamics in Compressible Flow by Target Pressure Distribution  2021(1)

A numerical investigation of CO2 dilution on the thermochemical characteristics of a swirl stabilized diffusion flame  2020(2)

Numerical assessment of a deformable trailing-edge flap on aerodynamic load control of a pitching S809 airfoil using OpenFOAM  2016(7)