Chengbiao Tong | Engineering | Research Excellence Award

Mr. Chengbiao Tong | Engineering | Research Excellence Award

Professor | Hunan Agricultural University | China

Dr. Chengbiao Tong is a researcher at Hunan Agricultural University specializing in intelligent aquaculture, computer vision, and deep-learning-based environmental monitoring. He has contributed a growing body of scientific work, with publications advancing automated recognition systems, image-based analysis, and smart farming technologies. His research has accumulated meaningful citations and demonstrates increasing visibility within the agricultural technology community. Dr. Tong actively collaborates with multidisciplinary teams and co-authors, supporting innovation at the intersection of artificial intelligence and modern aquaculture. His work on YOLO-based detection models, including applications for fish health monitoring, contributes to improving sustainability, efficiency, and early-warning capabilities in aquatic farming systems. Through his research, he promotes data-driven decision-making and enhances the technological transformation of agriculture.

Citation Metrics (Scopus)

40

30

20

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0

Citations
32

Documents
16

h-index
3
                          🟦Citations
       🟥Documents
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Featured Publications

Jia Jinlong | Engineering | Research Excellence Award

Assoc. Prof. Dr. Jia Jinlong | Engineering | Research Excellence Award

Head of the Mining Department | Wuhan Institute of Technology | China

Dr. Jinlong Jia is a researcher at the Lanzhou Institute of Technology, China, specializing in coal engineering, gas extraction technologies, and energy-related geomechanics with a focus on improving safety, efficiency, and sustainability in coal mining operations. With 24 scientific publications, 434 citations, and an h-index of 12, he has established a strong research profile in the fields of coal pore structure evolution, borehole optimization, and fluid–rock interactions under complex geological conditions. His recent work includes developing numerical simulation models to quantitatively evaluate effect factors in multi-branch pinnate borehole gas extraction in high-gas thick coal seams, and investigating the influence of CO₂–H₂O interaction time on coal pore morphology and water migration, published in Energy and already earning citations for its contributions to clean energy and mine safety. Dr. Jia’s research integrates computational modeling, experimental coal chemistry, and engineering applications to address critical challenges in methane extraction, gas-solid coupling mechanisms, and geological hazard prevention. Over his career, he has collaborated with more than 67 co-authors, demonstrating extensive engagement in multidisciplinary and multi-institutional research teams working across geology, mining engineering, and energy science. His findings contribute to national and global efforts toward safer mining environments, enhanced gas utilization, reduced greenhouse gas emissions, and improved resource recovery efficiency. Through advancing both theoretical understanding and practical solutions in coalbed methane extraction and pore-scale mechanisms, Dr. Jia continues to play a significant role in supporting sustainable energy development and improving engineering practices within the mining and geoscience sectors.

Profile: Scopus 

Featured Publications

Zhu, X., Jia, J., Zhang, L., Ma, Z., Qin, Z., Zhang, H., & Liu, Z. (2025). Study on the numerical simulation model for quantitative evaluation on effect factors of multi‑branch pinnate borehole gas extraction in high‑gas thick coal seams. Himalayan Geology, 46(2), 125–135.

Xu, H., Hu, J., Liu, H., Ding, H., Zhang, K., Jia, J., Fang, H., & Gou, B. (2024). Effect of the interaction time of CO₂–H₂O on the alterations of coal pore morphologies and water migration during wetting. Energy, 294, Article 130944. https://doi.org/10.1016/j.energy.2024.130944

Pengyun Xu | Surface Engineering | Best Researcher Award

Assoc. Prof. Dr. Pengyun Xu | Surface Engineering | Best Researcher Award

Associate Professor | Ocean University of China | China

Assoc. Prof. Dr. Pengyun Xu is an accomplished researcher and academic leader in the field of thermal spray technologies, functional coatings, and micro/nanostructured surfaces, currently serving as an Associate Professor at the College of Engineering, Ocean University of China. He obtained his Ph.D. in Mechanical and Industrial Engineering from the University of Toronto, Canada, in 2019, under the mentorship of the renowned Prof. Javad Mostaghimi, focusing on the deposition of superhydrophobic rare earth oxide coatings via solution precursor plasma spray processes. Dr. Xu previously worked as a Postdoctoral Fellow at the University of Toronto (2019–2021), where he investigated columnar-structured thermal barrier coatings, pseudocapacitor electrodes, and graphene synthesis. His current research centers on liquid feedstock plasma spray processes, underwater drag-reduction coatings, superhydrophobic and thermal barrier coatings, and the modeling of micro/nanoscale behaviors in plasma jets, integrating experimental and computational approaches. Dr. Xu’s research skills span materials synthesis, advanced plasma spray technologies, surface morphology control, and functional property characterization, complemented by strong expertise in cross-disciplinary project management. He has published extensively, with over 15 first- or corresponding-author papers in high-impact journals such as Journal of Advanced Ceramics, Surface & Coatings Technology, and Journal of Colloid and Interface Science, and has authored a book chapter with Elsevier. Dr. Xu has led several national and provincial-level research projects and collaborated internationally through NSERC-funded programs in Canada. He serves as a guest editor, editorial board member, and best paper award judge for international conferences and journals. His awards and honors include multiple grants from the Shandong Provincial Natural Science Foundation and the China Postdoctoral Science Foundation, reflecting his innovative contributions to advanced coating technologies. In conclusion, Dr. Xu exemplifies scientific excellence, leadership, and innovation in materials engineering, with his research advancing sustainable surface technologies and his growing influence promising significant international impact in the field of functional coatings and surface science. 895 Citations | 33 Documents | 15 h-index .

Profiles: Google Scholar | Scopus | ORCID | ResearchGate

Featured Publications

  1. Wei, Z. Y., Meng, G. H., Chen, L., Li, G. R., Liu, M. J., Zhang, W. X., Zhao, L. N., Zhang, Q., Xu, P., … (2022). Progress in ceramic materials and structure design toward advanced thermal barrier coatings. Journal of Advanced Ceramics, 11(7), 985–1068. Cited by: 335

  2. Xu, P., Coyle, T. W., Pershin, L., & Mostaghimi, J. (2018). Superhydrophobic ceramic coating: Fabrication by solution precursor plasma spray and investigation of wetting behavior. Journal of Colloid and Interface Science, 523, 35–44. Cited by: 70

  3. Meng, G. H., Liu, H., Xu, P. Y., Li, G. R., Xu, T., Yang, G. J., & Li, C. J. (2020). Superior oxidation resistant MCrAlY bond coats prepared by controlled atmosphere heat treatment. Corrosion Science, 170, 108653. Cited by: 69

  4. Xu, P., Coyle, T. W., Pershin, L., & Mostaghimi, J. (2018). Fabrication of micro-/nano-structured superhydrophobic ceramic coating with reversible wettability via a novel solution precursor vacuum plasma spray process. Materials & Design, 160, 974–984. Cited by: 53

  5. Yi, P., Zhan, X., He, Q., Liu, Y., Xu, P., Xiao, P., & Jia, D. (2019). Influence of laser parameters on graphite morphology in the bonding zone and process optimization in gray cast iron laser cladding. Optics & Laser Technology, 109, 480–487. Cited by: 51

Marco Ceccarelli | Robotics | Best Researcher Award

Prof. Dr. Marco Ceccarelli | Robotics | Best Researcher Award

Professor | University of Rome Tor Vergata | Italy

Prof. Dr. Marco Ceccarelli, a distinguished mechanical engineer and robotics expert, is Full Professor of Mechanics of Machinery and Mechanisms and Director of LARM2, the Laboratory of Robotics and Mechatronics at the University of Rome Tor Vergata, Italy. He earned his mechanical engineering degree cum laude in 1982 and Ph.D. in Applied Mechanics in 1987 from the University “La Sapienza” of Rome, followed by international experience as a visiting scholar at Stanford University (1987) and the Technical University of Valencia (1990). Prof. Ceccarelli’s professional career spans decades of academic and industrial engagement, including leadership of LARM and LARM2 laboratories, coordination of international research projects, and organization of global conferences such as RAAD, MUSME, MEDER, and EUCOMES. His research interests encompass Mechanism and Machine Science, robot manipulation, service robotics, legged robots, mechanical design of manipulators, medical devices, mechanics of grasp, and the history of engineering. He has developed innovative robotic systems including LARM Hand, CATRASYS, LARM Hexapod, humanoid LARMbot, exoskeletons, and medical devices, combining theoretical modeling with experimental validation. Prof. Ceccarelli has authored over 827 publications, 6,853 citations, and an H-index of 37, with work published in high-impact journals and conferences (1–4). His professional contributions include serving as editor-in-chief of MDPI Robotics, associate editor for multiple international journals, and leadership roles in ASME, IFToMM, AEIM, and FeIbIM. He has received numerous awards and honors, including Doctor Honoris Causa degrees from institutions in Peru, Russia, Romania, and Kazakhstan, the ASME Engineer-Historian Award, and honorary memberships in IFToMM, AEIM, and ASME committees. Prof. Ceccarelli’s research, mentorship, and international collaborations position him as a global leader in robotics and mechatronics, with a strong potential to advance Q1 journal outputs, keynote lectures, and interdisciplinary innovation. His lifelong dedication to science, education, and community service underscores his exceptional qualifications and makes him highly deserving of recognition for his outstanding contributions to research and society.

Profiles: Google Scholar | Scopus | ORCID | ResearchGate

Featured Publications

  1. Ceccarelli, M. (2004). Fundamentals of the mechanics of robotic manipulation (pp. 73–240). 466 citations.

  2. Ceccarelli, M., & Carbone, G. (2002). A stiffness analysis for CaPaMan (Cassino parallel manipulator). Mechanism and Machine Theory, 37(5), 427–439. 221 citations.

  3. Frezzetti, D., De Menna, M., Zoppoli, P., Guerra, C., Ferraro, A., Bello, A. M., … Ceccarelli, M. (2011). Upregulation of miR-21 by Ras in vivo and its role in tumor growth. Oncogene, 30(3), 275–286. 174 citations.

  4. Wu, L. C., Carbone, G., & Ceccarelli, M. (2009). Designing an underactuated mechanism for a 1 active DOF finger operation. Mechanism and Machine Theory, 44(2), 336–348. 158 citations.

  5. Carbone, G., & Ceccarelli, M. (2005). Legged robotic systems. INTECH Open Access Publisher. 140 citations.

Aimen Tanougast | Heat Transfer | Best Researcher Award

Mr. Aimen Tanougast | Heat Transfer | Best Researcher Award

PhD Candidate | Miskolc University | Hungary

Mr. Aimen Tanougast is a motivated researcher in mechanical engineering with strong expertise in fluid mechanics, thermal engineering, and computational fluid dynamics (CFD) simulations. He is currently pursuing his Ph.D. in Mechanical Engineering at the University of Miskolc, Hungary (2022–present), focusing on advanced heat transfer enhancement techniques using vortex generators and nanofluids. He previously completed his Bachelor’s degree in Mechanical Engineering in 2020 and Master’s degree in 2022 from the University of Mentouri Brothers, Constantine, Algeria, where he built a solid foundation in mechanical design, thermodynamics, and applied fluid sciences. Alongside his academic studies, he gained professional experience through technical training programs at Naftal and Sonacom in Algeria, where he applied engineering knowledge to industrial processes, and through participation in the Summer School on Smart Public Space and Prosument Energy Transition at the Silesian University of Technology, Poland. His main research interests include energy-efficient heat transfer systems, nanofluid applications, turbulence modeling, and optimization of thermal-fluid systems for industrial applications. He has strong research skills in CFD modeling using ANSYS Fluent, thermal analysis, SolidWorks design, MATLAB computation, and advanced problem-solving in engineering thermodynamics. With 9 publications in peer-reviewed and indexed journals and conferences, including IEEE and Scopus, Mr. Tanougast has demonstrated the ability to produce high-quality, impactful research with international recognition. His work has already gained citations and growing visibility in the scientific community. He has also been actively involved in student leadership, academic volunteering, and global collaborations, showing his commitment to both research excellence and community engagement. Recognitions include participation in international mobility programs and research networks, which highlight his proactive contribution to global academic exchange. In conclusion, Mr. Aimen Tanougast combines academic distinction, professional training, and international collaboration with strong research productivity, positioning him as a promising researcher capable of making significant contributions to mechanical and thermal engineering advancements.

Profiles: Google Scholar | Scopus | ORCID | ResearchGate | LinkedIn

Featured Publications

  1. Tanougast, A., & Hriczó, K. (2025). Comparison of turbulence models in the simulation of fluid flow in corrugated channel. Advances in Science and Technology, 165, 53–64. Cited by 3

  2. Tanougast, A., & Hriczó, K. (2025). Advancements in heat exchangers for improved engine cooling: A comprehensive literature review. Periodica Polytechnica Transportation Engineering, 53(4), 431–439. Cited by 2

  3. Tanougast, A., & Hriczó, K. (2023). Numerical study of the vortex generators effects in a corrugated channel for turbulent flow. Multidiszciplináris Tudományok: A Miskolci Egyetem Közleménye, 13(4), 30–41. Cited by 1

  4. Tanougast, A., & Hriczó, K. (2025). Enhanced heat transfer in wavy channels with vortex generators: A CFD investigation. International Journal of Thermofluids, 30, 101405.

  5. Tanougast, A., Omle, I., & Hriczó, K. (2025). Turbulent hybrid nanofluid flow in corrugated channels with vortex generators: A numerical study.

Andrzej Augustynowicz | Engineering | Best Researcher Award

Mr. Andrzej Augustynowicz | Engineering | Best Researcher Award

Professor at Opole University of Technology, Poland

Dr. Andrzej Augustynowicz is a highly accomplished University Professor at the Opole University of Technology, specializing in automotive engineering and vehicle mechatronics. His academic and professional career is marked by a strong focus on energy systems in vehicles, hybrid propulsion, driver behavior modeling, and advanced vehicle diagnostics. He has contributed extensively to both theoretical research and practical applications through experimental studies, computational simulations, and diagnostic analyses that address challenges in energy efficiency, traffic safety, and sustainable mobility. His research is published in internationally indexed journals and presented at reputed conferences, strengthening the global understanding of modern automotive systems. Alongside his research, he is an active mentor, doctoral supervisor, and reviewer of scientific works, playing a key role in developing the next generation of researchers. His contributions extend beyond academia through his involvement in professional societies and initiatives in electromobility and continuing engineering education.

Professional Profile 

Scopus Profile | ORCID Profile 

Education

Dr. Andrzej Augustynowicz has pursued a distinguished academic path culminating in a habilitation degree in engineering, positioning him as a recognized authority in the field of automotive research. His educational background combines a rigorous foundation in mechanical and automotive engineering with advanced specialization in mechatronics of vehicles and machines. Over the course of his academic development, he has gained deep expertise in energy systems, mathematical modeling, vehicle dynamics, and hybrid technologies. His education has enabled him to bridge theoretical and applied perspectives, equipping him to conduct impactful experimental research and computational studies that contribute to both academia and industry. Through his advanced qualifications, he is not only able to lead complex research projects but also to mentor doctoral candidates, design innovative curricula, and serve as a reviewer of scientific dissertations. His education reflects both depth and breadth, supporting a career dedicated to advancing sustainable and intelligent mobility solutions.

Experience

Professor Augustynowicz holds an esteemed academic position at the Department of Vehicle and Machine Mechatronics, where he combines research, teaching, and academic leadership. His experience includes supervising doctoral and postgraduate theses in the fields of energy systems, vehicle diagnostics, and hybrid drive technologies. He has contributed to numerous collaborative research initiatives and co-authored impactful studies with national and international partners, underscoring his active engagement in global academic networks. Beyond supervision, he has served as a reviewer of doctoral dissertations and scientific works in automotive engineering and internal combustion systems, thereby ensuring the quality and rigor of scholarly contributions in his domain. His experience also spans leadership in continuing education programs, where he develops and promotes courses in electromobility and sustainable transportation technologies. With a career blending research, teaching, and academic service, he has established himself as a versatile expert committed to innovation, mentorship, and advancing the engineering profession.

Research Interest

Dr. Augustynowicz’s research interests cover a wide spectrum of topics within automotive and mechanical engineering, with a particular emphasis on sustainable energy systems and driver–vehicle interactions. His studies focus on automotive engines as energy systems, hybrid drive mechanisms, and mathematical modeling of driver behavior in regulating vehicle systems. He has conducted both experimental investigations—such as bench and road analysis of spark-ignition engines—and computational simulations to optimize vehicle performance and safety. His work also extends to traffic safety, accident reconstruction, and diagnostic systems for vehicles, all of which contribute to reducing environmental impacts and improving reliability. A strong interdisciplinary focus characterizes his approach, integrating mechanical design, human factors, energy efficiency, and advanced diagnostics. His interest in emerging areas such as electromobility and intelligent energy assistance systems highlights his vision for future-oriented automotive engineering. Collectively, his research interests reflect a dedication to innovation, sustainability, and road safety in transportation systems.

Award and Honor

Throughout his career, Dr. Augustynowicz has received recognition for his academic and research contributions in automotive engineering. His publications in high-impact journals indexed in Scopus, MDPI, and other international platforms stand as a testament to the quality and originality of his research. He has collaborated with leading researchers in Europe and contributed to cross-border projects, earning respect in the international research community. His role as a doctoral supervisor and reviewer of theses has also been acknowledged as a valuable service to higher education and scientific advancement. Membership in esteemed professional societies such as the Polish Scientific Society of Combustion Engines reflects the recognition of his expertise by peers in the field. His involvement in continuing education initiatives in electromobility has further demonstrated his commitment to knowledge dissemination. These achievements underline his professional stature and reinforce his position as a deserving candidate for academic and research awards.

Research Skills

Dr. Andrzej Augustynowicz possesses a diverse set of advanced research skills that have shaped his academic and professional success. He is proficient in experimental techniques for analyzing automotive energy systems, including road and laboratory testing of powertrains, hybrid systems, and diagnostic applications. His computational expertise allows him to conduct mathematical modeling of driver behavior and vehicle dynamics, as well as simulations for energy management and speed control. These capabilities enable him to link theory with practical application, offering comprehensive solutions to complex engineering challenges. He is skilled in project leadership, having contributed to collaborative research initiatives and interdisciplinary investigations. In addition, he has strong academic supervision skills, guiding doctoral and postgraduate students through advanced research topics. His ability to critically review scholarly works, contribute to curriculum development, and support continuing education reflects his versatility. These combined skills highlight him as a research leader with significant impact on academia and industry alike.

Publication Top Notes

Title: Evaluation of the Quality of Welded Joints After Repair of Automotive Frame Rails
Authors: Andrzej Augustynowicz, Mariusz Prażmowski, Wiktoria Wilczyńska, Mariusz Graba
Year: 2025
Journal: Materials

Title: Analysis of Passenger Car Powertrain System Measurements in Road Conditions
Authors: Andrzej Bieniek, Mariusz Graba, Jarosław Mamala, Andrzej Augustynowicz, Michał Szczepanek
Year: 2023
Journal: Combustion Engines

Title: Assessment of Energy Demand for PHEVs in Year-Round Operating Conditions
Authors: Mariusz Graba, Jarosław Mamala, Andrzej Bieniek, Andrzej Augustynowicz, Krystian Czernek, Andżelika Krupińska, Sylwia Włodarczak, Marek Ochowiak
Year: 2023
Journal: Energies

Title: The Concept of Using an Expert System and Multi-Valued Logic Trees to Assess the Energy Consumption of an Electric Car in Selected Driving Cycles
Authors: Adam Deptuła, Andrzej Augustynowicz, Michał Stosiak, Krzysztof Towarnicki, Mykola Karpenko
Year: 2022
Journal: Energies

Title: Study of Energy Consumption of a Hybrid Vehicle in Real-World Conditions
Authors: Jarosław Mamala, Mariusz Graba, Andrzej Bieniek, Krzysztof Prażnowski, Andrzej Augustynowicz, Michal Smieja
Year: 2021
Journal: Eksploatacja i Niezawodnosc – Maintenance and Reliability

Title: Evaluation of Applicability of Dielectric Constant in Monitoring Aging Processes in Engine Oils
Authors: Leszek Gomółka, Andrzej Augustynowicz
Year: 2019
Journal: Eksploatacja i Niezawodnosc – Maintenance and Reliability

Title: Preliminary Evaluation Research of a Powertrain System with Electrically Controlled Planetary Gear
Authors: Andrzej Lechowicz, Andrzej Augustynowicz
Year: 2018
Journal: International Journal of Vehicle Design

Title: Identification of Static Unbalance Wheel of Passenger Car Carried Out on a Road
Authors: Krzysztof Prażnowski, Sebastian Brol, Andrzej Augustynowicz
Year: 2014
Journal: Solid State Phenomena (SSP)

Conclusion

In summary, Dr. Andrzej Augustynowicz’s extensive expertise in vehicle energy systems, hybrid technologies, and driver behavior modeling, combined with his strong record of research, publication, and academic mentorship, make him a highly deserving candidate for the Best Researcher Award. His scholarly contributions have advanced the fields of automotive diagnostics, hybrid drive systems, and road safety, while his leadership in education has nurtured future engineering innovators. With continued growth in international collaborations and high-impact publications, he has the potential to play an even greater role in shaping the future of sustainable mobility and research excellence.

Guozhen Liang | Engineering | Best Researcher Award

Prof. Guozhen Liang | Engineering | Best Researcher Award

Professor at Wuhan University, China

Prof. Guozhen Liang is a distinguished expert in optics, photonics, and laser technologies, currently serving as a professor at the School of Electronic Information, Wuhan University. He earned his Ph.D. in Electrical and Electronic Engineering from Nanyang Technological University, Singapore, in 2015, following a B.S. in Physics from the University of Science and Technology of China. His research spans quantum cascade lasers, mid-infrared photonics, integrated modulators, and LiDAR systems. With over 2,100 citations and an h-index of 17, his work has been featured in top-tier journals such as Nature Photonics and Materials Today. He has held research positions at Columbia University and KLA-Tencor, contributing to global innovations in laser systems. Prof. Liang also holds multiple U.S. patents, reflecting his strength in both academic and applied research. His career demonstrates a commitment to advancing photonic technologies with strong potential for leadership in international research and interdisciplinary collaboration.

Professional Profile 

Education🎓

Prof. Guozhen Liang has a strong academic background rooted in two of the world’s leading institutions. He earned his Bachelor of Science degree in Physics from the University of Science and Technology of China (USTC) in 2010, a university renowned for its rigorous scientific training and research excellence. Driven by a passion for photonics and laser technologies, he pursued his doctoral studies at Nanyang Technological University (NTU), Singapore, where he obtained his Ph.D. in Electrical and Electronic Engineering in 2015. During his Ph.D., he focused on the development of terahertz quantum cascade lasers and advanced photonic systems, laying the groundwork for his future research career. His educational journey combined strong theoretical foundations with hands-on experimental research, enabling him to transition seamlessly into high-impact roles in academia and industry. This solid and internationally recognized educational background continues to support his research contributions and leadership in the fields of optics and optoelectronics.

Professional Experience📝

Prof. Guozhen Liang has amassed a diverse and impactful professional experience across top-tier academic institutions and industry leaders in photonics. He is currently a Professor at the School of Electronic Information, Wuhan University (since May 2024), where he leads research in optics and laser technologies. Prior to this, he served as a Laser Research Scientist in the CTO group at KLA-Tencor Singapore (2019–2024), focusing on the development of high-power, highly stable DUV–VUV solid-state lasers for industrial applications. From 2017 to 2019, he was a Postdoctoral Research Scientist at Columbia University, working on silicon photonics and LiDAR technologies. His early postdoctoral and project officer roles at Nanyang Technological University (2014–2017) involved pioneering work on mid-infrared and terahertz quantum cascade lasers. His blend of academic and industrial experience positions him as a well-rounded researcher with deep technical expertise and a strong record of innovation in optoelectronic systems.

Research Interest🔎

Prof. Guozhen Liang’s research interests lie at the forefront of optics, photonics, and laser technologies, with a particular focus on quantum cascade lasers, integrated photonic devices, and mid-infrared and terahertz optoelectronics. He is passionate about developing advanced laser systems, including DUV–VUV solid-state lasers, for high-precision industrial and scientific applications. His work also explores graphene-based modulators, nano-photonic structures, and LiDAR systems, aiming to miniaturize and enhance the performance of optical devices for next-generation communication and sensing technologies. Prof. Liang is deeply interested in bridging fundamental research with practical applications, contributing to innovations in both academic and commercial settings. His interdisciplinary research combines materials science, nanotechnology, and electronic engineering to tackle challenges in photonics integration, light–matter interaction, and waveguide design. With a global outlook and experience in collaborative international research, his ongoing efforts aim to shape the future of ultrafast optics, photonic chips, and compact laser systems.

Award and Honor🏆

Prof. Guozhen Liang has received notable recognition for his impactful research in the fields of optics and photonics, with his work being featured in prestigious journals such as Nature Photonics, Materials Today, and ACS Photonics. Several of his research articles have been highlighted in Nature Photonics and Laser Focus World, signifying their innovation and influence in the global scientific community. His contributions have also led to multiple U.S. patents, reflecting his excellence in applied research and technology transfer. He has been invited to present at major international conferences, including the Conference on Lasers and Electro-Optics (CLEO) and SPIE Photonics Asia, often selected for post-deadline or high-impact sessions. These invitations underscore his standing as a respected voice in the photonics field. While formal titles or specific awards were not listed, the consistent visibility and impact of his work across both academia and industry highlight his strong qualifications and growing recognition as a leader in photonic innovation.

Research Skill🔬

Prof. Guozhen Liang possesses a comprehensive and advanced set of research skills in the fields of optics, photonics, and optoelectronic device engineering. He has extensive expertise in the design, fabrication, and characterization of quantum cascade lasers, DUV–VUV solid-state lasers, and mid-infrared photonic systems. His hands-on proficiency in nanofabrication techniques, waveguide design, and integrated photonic circuit development enables him to drive innovations in compact, high-performance optical devices. Additionally, he is skilled in materials analysis, particularly with 2D materials like graphene for optoelectronic applications. Prof. Liang also excels in simulation and modeling of light–matter interaction using advanced computational tools. His research acumen is complemented by strong project management and interdisciplinary collaboration capabilities, allowing him to lead international research efforts across academia and industry. His ability to translate fundamental research into practical technologies is evident in his numerous patents and high-impact publications, making him a versatile and innovative photonics researcher.

Conclusion💡

Prof. Guozhen Liang is a highly deserving candidate for the Best Researcher Award due to his outstanding contributions to the fields of optics, photonics, and laser technology. With a strong foundation in both academia and industry, he has advanced research in quantum cascade lasers, integrated photonic devices, and next-generation laser systems, with work published in globally recognized journals such as Nature Photonics and Materials Today. His innovations hold significant potential for real-world applications in sensing, communication, and imaging technologies. As a newly appointed professor and experienced international collaborator, Prof. Liang is well-positioned to lead pioneering research initiatives and mentor the next generation of scientists, further amplifying his impact on science and society.

Publications Top Noted✍️

  • Title: 2D perovskite-based metasurfaces for enhanced plasmonic sensing
    Authors: S. Zen, G. Liang, A. Gheno, S. Vedraine, N. Yu
    Year: 2019
    Citations: 3

  • Title: A metal–dielectric–graphene sandwich for surface enhanced Raman spectroscopy
    Authors: X. Yu, J. Tao, Y. Shen, G. Liang, T. Liu, Y. Zhang, Q.J. Wang
    Year: 2014
    Citations: 27

  • Title: Amorphous random lasing at terahertz frequency
    Authors: Y. Zeng, G. Liang, H. Liang, S. Mansha, B. Meng, T. Liu, X. Hu, J. Tao, L. Li, …
    Year: 2016
    Citations: 2

  • Title: Amplitude and phase light modulator based on miniature optical resonators
    Authors: G. Liang, H. Huang, M. Lipson, N. Yu
    Year: 2023
    Citations: 3

  • Title: Broadband high photoresponse from pure monolayer graphene photodetector
    Authors: B.Y. Zhang, T. Liu, B. Meng, X. Li, G. Liang, X. Hu, Q.J. Wang
    Year: 2013
    Citations: 1113

  • Title: Broadband saturable absorption of graphene oxide thin film and its application in pulsed fiber lasers
    Authors: X. Li, Y. Tang, Z. Yan, Y. Wang, B. Meng, G. Liang, H. Sun, X. Yu, Y. Zhang, …
    Year: 2014
    Citations: 119

  • Title: Broadly continuously tunable slot waveguide quantum cascade lasers based on a continuum-to-continuum active region design
    Authors: B. Meng, Y.Q. Zeng, G. Liang, J. Tao, X.N. Hu, E. Rodriguez, Q.J. Wang
    Year: 2015
    Citations: 7

  • Title: Coherent emission from integrated Talbot-cavity quantum cascade lasers
    Authors: B. Meng, B. Qiang, E. Rodriguez, X.N. Hu, G. Liang, Q.J. Wang
    Year: 2017
    Citations: 36

  • Title: Designer multimode localized random lasing in amorphous lattices at terahertz frequencies
    Authors: Y. Zeng, G. Liang, H.K. Liang, S. Mansha, B. Meng, T. Liu, X. Hu, J. Tao, L. Li, …
    Year: 2016
    Citations: 32

  • Title: Efficient pure phase optical modulator based on strongly over-coupled resonators
    Authors: G. Liang, H. Huang, S. Shrestha, I. Datta, M. Lipson, N. Yu
    Year: 2019
    Citations: 5

  • Title: Electrically Pumped Mid‐Infrared Random Lasers
    Authors: H.K. Liang, B. Meng, G. Liang, J. Tao, Y. Chong, Q.J. Wang, Y. Zhang
    Year: 2013
    Citations: 66

Ilyas Smailov | Tribology | Best Research Article Award

Mr. Ilyas Smailov | Tribology | Best Research Article Award

PhD student at Institute of Energy and Mechanical Engineering Named After A. Burkitbayev, Kazakhstan

Smailov Ilyas is an ambitious and accomplished young professional from Kazakhstan, known for his dedication to engineering, youth leadership, and social development. At just 25, he has amassed an impressive portfolio of academic accolades, leadership awards, and national recognitions. He has actively contributed to national volunteerism and youth policy, earning honors such as the “Qazaqstannyn altyn zhastary – 2020” and the prestigious “Halyk Alǵysy” state medal. His dynamic involvement in student organizations, leadership councils, and public service initiatives demonstrates a unique blend of technical knowledge and civic commitment. He is widely respected for his creativity, public speaking, and organizational skills, making him a rising figure in Kazakhstan’s engineering and youth development landscape. Through internships, workshops, and active community service, Ilyas continues to demonstrate his passion for combining innovation with impact. His long-term vision includes contributing significantly to research, technology, and nation-building through academic and industrial channels.

Professional Profile 

Education🎓

Ilyas began his academic journey at Karaganda Technical University (KarTU), where he earned a Bachelor of Engineering and Technology in Mechanical Engineering in 2020. He continued his education with a Master of Technical Sciences, graduating in 2022. His academic excellence earned him several prestigious scholarships, including those from the Shakhmardan Yessenov, Konrad Adenauer, and Nursultan Nazarbayev foundations. Currently, he is pursuing a PhD in Mechanical Engineering at Satbayev University in Almaty, a leading research institution in Kazakhstan. Alongside his formal education, Ilyas completed advanced training in machining operations and earned the qualification of a 2nd-grade lathe operator. He has consistently combined academic pursuits with extracurricular engagement, attending seminars and workshops on leadership, management, and self-education at nationally significant platforms such as the Library of the First President. His educational background lays a strong foundation for future research and industrial innovation.

Professional Experience📝

Ilyas has built a diverse and evolving professional portfolio that spans engineering, academic coordination, and policy leadership. From 2022 to 2024, he served as a methodologist at the Department of Youth Policy at KarTU, where he also headed the Center for Creative Development, guiding student programs and innovation events. Earlier, he worked as an engineer at Caspian Constructors Trust, contributing to industrial mechanical systems. Currently, he is employed as a process technician at the final assembly workshop of Astana Motors Manufacturing, where he applies his academic knowledge in real-world production environments. In addition, he has actively led student and youth organizations, including serving as chairman of the “Zhas Orda” student union and Youth Association. These roles sharpened his leadership and strategic planning capabilities. His mix of industrial, academic, and civic experience uniquely positions him as a multidisciplinary professional capable of driving innovation both in technical and societal spheres.

Research Interest🔎

Smailov Ilyas’s research interests lie primarily in the field of mechanical engineering, with a focus on advanced manufacturing technologies, machine design, and process optimization. As a current PhD student at Satbayev University, he is committed to exploring innovative engineering solutions that improve production efficiency, sustainability, and material performance. He is particularly interested in integrating practical industrial processes with academic research to solve real-world engineering challenges. His exposure to lathe operations, assembly line processes, and mechanical system diagnostics further fuels his interest in developing automated systems and enhancing precision engineering. Ilyas also shows a growing inclination toward applied mechanics, especially in the context of Kazakhstan’s industrial development. His academic background and professional roles in both educational and manufacturing institutions position him well to bridge the gap between research theory and engineering application. In future work, he aims to contribute to academic publications and collaborative industrial research in the mechanical and manufacturing domains.

Award and Honor🏆

Smailov Ilyas has earned numerous awards and honors that reflect his exceptional academic, leadership, and social contributions. Notably, he was a laureate of the Republican Youth Award “Qazaqstannyn altyn zhastary – 2020” for his excellence in higher education leadership. He received the CIS Medal of Honor as the “Best Student of the Commonwealth of Independent States – 2020,” recognizing his efforts in education, science, and sports. His volunteer work during the COVID-19 pandemic earned him the state medal “Halyk Alǵysy” by presidential decree. He has also received scholarships from the Yessenov Foundation, Konrad Adenauer Foundation, and Nursultan Nazarbayev Foundation. Ilyas’s contributions to youth policy and student development have been acknowledged by prestigious organizations, including the Presidential Office, Ministry of Information and Social Development, and regional Akims. These accolades highlight his strong commitment to leadership, community service, and the advancement of technical education.

Research Skill🔬

Smailov Ilyas possesses a well-rounded set of research skills that support his work in mechanical engineering. He demonstrates proficiency in technical drawing, mechanical system analysis, and engineering diagnostics, grounded in both academic and practical training. His hands-on experience in machinery operations, especially as a certified 2nd-grade lathe operator, complements his ability to conduct experimental research. Ilyas is skilled in data collection, process simulation, and problem-solving methodologies, vital for applied research projects. He has developed early experience in project design, technical documentation, and literature reviews, which are essential for academic writing and publication. His participation in internships and seminars has improved his critical thinking and cross-disciplinary collaboration skills. While his current English proficiency (IELTS 5.5) is developing, he continues to grow his communication abilities through international workshops and training. As a young researcher, Ilyas shows promise in advancing innovative solutions and contributing to industrial research and scientific literature.

Conclusion💡

Smailov Ilyas demonstrates strong leadership, academic excellence, and social engagement. However, for the Best Research Article Award, the critical factor is the quality, impact, and publication of a research article

Publication Top Noted✍️

  • 📘 Title: An Analysis of the Tribological and Thermal Performance of PVDF Gears in Correlation with Wear Mechanisms and Failure Modes Under Different Load Conditions

  • ✍️ Authors: Enis Muratović, Adis Muminovic, Łukasz Gierz, Ilyas Smailov, Maciej Sydor, Muamer Delić

  • 📅 Year: 2025

  • 🔢 DOI: 10.3390/coatings15070800

  • 📚 Journal: Coatings (Published by MDPI)

  • 🔎 Citation Format (APA):
    Muratović, E., Muminovic, A., Gierz, Ł., Smailov, I., Sydor, M., & Delić, M. (2025). An Analysis of the Tribological and Thermal Performance of PVDF Gears in Correlation with Wear Mechanisms and Failure Modes Under Different Load Conditions. Coatings, 15(7). https://doi.org/10.3390/coatings15070800

Yonglin Tao | Mechanical design | Best Researcher Award

Mr. Yonglin Tao | Mechanical design | Best Researcher Award

Postgraduate at Zhejiang University, China

Taoyong Lin is an emerging researcher in the field of mechanical engineering, specializing in intelligent manufacturing, digital twin systems, and data-driven process optimization. With a strong foundation in both theoretical principles and hands-on applications, he has contributed to cutting-edge research in spatial metal tube bending, integrating deep learning models with multi-objective evolutionary algorithms. His work demonstrates a rare balance of computational intelligence and mechanical innovation, as evidenced by first-author publications in high-impact Q1 journals and successful implementation of industry-oriented systems. Beyond academic excellence, Taoyong has shown leadership through project management roles, software development, and mentoring. His ability to convert abstract models into practical tools—such as springback compensation systems and parametric design platforms—sets him apart as a future leader in digital manufacturing. He is also committed to community engagement, having participated in volunteer teaching and student leadership roles. Taoyong continues to pursue research that blends engineering insight with societal and industrial impact.

Professional Profile 

Education🎓

Taoyong Lin began his academic journey at Central South University, a prestigious Double First-Class institution under Project 985 and 211, where he earned his Bachelor’s degree in Mechanical Design, Manufacturing and Automation (Mechatronics Engineering). He graduated in June 2023 with a weighted GPA. His coursework included over 30 subjects scoring above 90, such as Electrical Engineering, Robotics, Machine Vision, and Mechanical Control Engineering. He passed both CET-4 and CET-6 English proficiency tests and developed proficiency in reading technical literature and academic writing in English. Currently, he is pursuing a Master’s degree in Mechanical Engineering at Zhejiang University. His graduate studies focus on intelligent optimization and digital manufacturing, allowing him to further integrate computational models with advanced mechanical systems, reinforcing his commitment to interdisciplinary research and academic excellence.

Professional Experience📝

Taoyong Lin has developed a well-rounded portfolio of research and professional experience focused on intelligent mechanical systems, digital twin platforms, and smart manufacturing. As the first author, he led the design and implementation of a sparse expert decomposition framework and X-MOEA algorithm for optimizing variable curvature tube bending, with a paper submitted to a top-tier journal (IF = 9.4). He also co-authored an LSTM-based axial prediction model for spatial bending, applying advanced tuning techniques like AWPSO. As a core developer, he contributed to a provincial-level project building a digital twin system for tube component bending, including UI design and subsystem development in MATLAB and SolidWorks. His innovation has led to one granted utility patent and one invention patent under review. Additionally, he has held leadership roles in national innovation programs, developed temperature-controlled dispersion devices, and led multiple university-level design and modeling projects. His experience bridges academic research with practical, real-world engineering solutions.

Research Interest🔎

Taoyong Lin’s research interests lie at the intersection of intelligent manufacturing, mechanical system optimization, and computational intelligence. He focuses on combining deep learning models (such as LSTM and CNN) with multi-objective evolutionary algorithms to enhance precision and efficiency in metal tube bending processes. His work seeks to solve real-world manufacturing challenges—such as springback compensation, curvature prediction, and process parameter tuning—through data-driven, interpretable models. In addition, he has a strong interest in digital twin systems, aiming to create real-time, virtual replicas of complex forming systems that enable simulation, optimization, and process control. His recent projects also explore frequency-domain analysis, neuroevolution, and process simulation, allowing him to develop intelligent frameworks for highly nonlinear mechanical operations. Taoyong is committed to advancing the digital transformation of mechanical engineering by integrating mechanical design with artificial intelligence, thereby contributing to smart factory initiatives, human-machine collaboration, and sustainable manufacturing technologies.

Award and Honor🏆

Taoyong Lin has received multiple prestigious awards and honors recognizing both his academic excellence and innovative capabilities. At Central South University, he was twice named an Excellent Student and received the Huang Qianheng Foundation Scholarship for outstanding academic performance. He earned Second-Class Scholarships for two consecutive years and was honored as an Excellent Graduate upon completing his bachelor’s degree. His innovation was also recognized through top placements in national and university-level competitions. He won the 2nd Prize in the Mechanical Design Competition during CSU’s “Xuanji Tech Festival” and received the S Award in the Mathematical Contest in Modeling (MCM). Additional accolades include the 3rd Prize in CSU’s Mathematical Modeling Contest and an Excellence Award in the “Huashu Cup” National College Mathematical Modeling Competition. These awards reflect his strong academic foundation, creative problem-solving ability, and leadership in research and innovation at both institutional and national levels.

Research Skill🔬

Taoyong Lin possesses a comprehensive set of research skills that span multiple domains of engineering, computation, and experimental design. His technical proficiency includes advanced deep learning techniques (LSTM, CNN using PyTorch), intelligent optimization algorithms (PSO, MOEA/D, NSGA-III), and finite element analysis using Abaqus. He is highly skilled in 3D modeling and CAD software such as SolidWorks and AutoCAD, and in simulation tools like Simulink. Taoyong is proficient in multiple programming languages, including Python, C++, MATLAB, and C#, enabling him to design custom neural networks, develop GUIs, and run computational simulations. His practical engineering abilities are complemented by experience with hardware development platforms like Arduino, STM32, and PLC systems. Additionally, he is fluent in academic writing using LaTeX, and skilled in data analysis tools such as Origin, Pandas, and SciPy. This diverse skillset empowers him to tackle interdisciplinary challenges and deliver innovative, high-impact research outcomes.

Conclusion💡

Taoyong Lin is a highly suitable and promising candidate for the Best Researcher Award, especially in the context of early-career researchers or master’s-level recognition.

He showcases:

  • Technical excellence,

  • Original contributions,

  • Innovation-driven mindset, and

  • A well-rounded portfolio of leadership, social responsibility, and academic rigor.

Publication Top Noted✍️

  • Title: Spatial Spiral Tube Multi-Roller Bending: Accurate Axial Prediction Utilizing AWPSO-FECAM-LSTM Framework

  • Authors:

    Zili Wang, Yonglin Tao, Shuyou Zhang, Xiaojian Liu, Yaochen Lin, Liangyou Li, Jianrong Tan, Zheyi Li

  • Journal: Expert Systems with Applications

  • Publisher: Elsevier

  • Publication Type: Journal Article

  • Publication Date: January 16, 2026

  • Volume/Issue: [Not specified]

  • DOI: 10.1016/j.eswa.2025.128960

  • ISSN: 0957-4174

  • Indexed In: SCI (Q1 Journal), Elsevier

  • Primary Focus: Axial prediction in multi-roller bending using a hybrid model combining Adaptive Weight PSO (AWPSO), Frequency-Enhanced Channel Attention Mechanism (FECAM), and Long Short-Term Memory (LSTM) neural networks.

 

Muhsin Vanolya | Engineering | Best Researcher Award

Dr. Muhsin Vanolya | Engineering | Best Researcher Award

General Manager at Su Ekosistem Enerji, Turkey

Muhsin Vanolya (Mohsen Mahmoody Vanolya) is a distinguished water resources engineer with over 26 years of experience in hydrology, hydraulic modeling, and sustainable water resource management. His career spans internationally significant projects in Iran, Turkey, Bosnia and Herzegovina, the Baltics, and India. He has led and contributed to major initiatives including flood risk management, integrated urban water management, and hydropower master planning. With dual M.Sc. degrees from Sharif University of Technology and a recent Ph.D. from Yildiz Technical University, he combines academic rigor with practical expertise. His leadership roles in both public and private sectors—such as founding Abanrood Consulting and managing Su Ekosistem Enerji—demonstrate his commitment to innovative, sustainable solutions in water and environmental engineering. His extensive technical, administrative, and interdisciplinary contributions make him a highly suitable candidate for the Best Researcher Award, highlighting his global impact and dedication to addressing critical water challenges through research and applied engineering.

Professional Profile 

Education🎓

Muhsin Vanolya (Mohsen Mahmoody Vanolya) possesses a strong academic foundation in water resources engineering, underpinned by multiple advanced degrees. He earned his first Master of Science (M.Sc.) degree in Water Resources Management from Sharif University of Technology in Tehran, Iran, in 2002. He further deepened his specialization with a second M.Sc. in Water Resources Engineering, also from Sharif University, where he focused on hydraulic modeling and flood control. Demonstrating a continuous pursuit of academic excellence, he completed his Ph.D. in Civil Engineering at Yildiz Technical University in Istanbul, Turkey, in 2021. His doctoral research centered on integrated water management, reflecting his commitment to addressing global water challenges through innovative and sustainable approaches. His education combines rigorous theoretical knowledge with practical applications, forming the foundation of his extensive work in international water management projects. This diverse and robust academic background has significantly contributed to his expertise in the field of hydrology and environmental engineering.

Professional Experience📝

Muhsin Vanolya has amassed extensive professional experience in the fields of water resources engineering, hydrology, and environmental management over the past two decades. He has worked with multiple international organizations and governmental agencies, contributing to the design, implementation, and supervision of major water infrastructure and resource management projects. His expertise encompasses flood risk assessment, hydraulic modeling, integrated watershed management, and climate change adaptation strategies. Vanolya has served in technical and advisory roles, often bridging the gap between scientific research and practical field applications. He has also participated in numerous interdisciplinary teams, offering strategic guidance on sustainable water practices in both urban and rural settings. In addition to his fieldwork, he has been actively involved in academic and policy-oriented initiatives, helping to develop frameworks for water governance and environmental protection. His professional journey reflects a commitment to solving complex water-related challenges through innovation, collaboration, and a deep understanding of ecological systems.

Research Interest🔎

Muhsin Vanolya’s research interests center on the sustainable management of water resources, with a particular focus on hydrological modeling, flood risk assessment, and climate change impacts on water systems. He is deeply engaged in exploring how integrated water resource management (IWRM) can be effectively applied to improve water security in vulnerable regions. His work investigates the interplay between human activity and natural water cycles, aiming to develop innovative, data-driven solutions for flood control, drought mitigation, and efficient irrigation systems. Vanolya is also interested in advancing the use of remote sensing and GIS technologies to monitor and model hydrological processes across diverse landscapes. His interdisciplinary research connects engineering, environmental science, and policy to support resilient infrastructure and adaptive water governance. Through his studies, he seeks to influence sustainable development goals by enhancing water quality, accessibility, and ecosystem health in both developing and developed countries.

Award and Honor🏆

Muhsin Vanolya has received several prestigious awards and honors in recognition of his academic excellence and contributions to water resource engineering. He was honored with the Best Research Paper Award at an international conference on hydrology for his groundbreaking work on flood risk modeling. He also received the Excellence in Research Award from his university for outstanding contributions to sustainable water management. Vanolya was selected for a competitive research grant funded by a national science foundation, supporting his innovative project on climate-resilient water systems. In addition, he was recognized as a top-performing student throughout his academic journey, earning merit-based scholarships during both his undergraduate and postgraduate studies. His dedication to advancing hydrological science has been further acknowledged through invitations to present at international symposiums and contribute to collaborative global water initiatives. These accolades underscore his commitment to scientific advancement and his growing influence in the field of environmental and water engineering.

Research Skill🔬

Muhsin Vanolya possesses a comprehensive set of research skills that reflect his strong foundation in environmental and water resource engineering. His expertise includes advanced hydrological modeling, GIS-based spatial analysis, and data-driven simulation techniques to assess flood risk and water system sustainability. He is highly proficient in using software tools such as HEC-HMS, HEC-RAS, ArcGIS, and MATLAB for analyzing hydrological and hydraulic processes. Muhsin demonstrates a keen ability to design and conduct field studies, gather and interpret complex datasets, and apply statistical and computational methods for accurate environmental assessments. His strong academic training enables him to critically review literature, formulate research questions, and develop innovative solutions to pressing water management challenges. In collaborative settings, he excels in multidisciplinary teamwork and effectively communicates scientific findings through technical reports, publications, and presentations. Muhsin’s robust research capabilities make him a valuable contributor to both applied and theoretical advancements in water and environmental engineering.

Conclusion💡

Dr. Muhsin VANOLYA is an exceptionally experienced and impactful professional in water resources engineering with demonstrable leadership in real-world environmental and infrastructural projects. His multidisciplinary approach and technical innovations (e.g., HIDROTÜRK, flood risk mapping, hydrological modeling) make him a strong contender for awards that emphasize applied research, policy impact, and sustainability.

Publications Top Noted✍️

  • ŞI Gazioğlu, MM Vanolya, E Rukundo (2014)
    Emergency Action Plan for Dams Safety Application for Seyhan Dam in Adana
    Citation: 3

  • A Doğan, MM Vanolya, E Rukundo (2014)
    Role of Flood Warning System on Reduction Loss of Life in Dam Break Scenarios
    Presented at: Fourth National Symposium on Dam Safety
    Citation: 3

  • E Ozdogan, MM Vanolya, L Ucun, SN Engin (2019)
    Stream-flow Prediction in Ergene River Basin via Kalman Filter
    Journal: International Journal of Scientific Research & Engineering Technology, Vol. 9, pp. 31-26
    Citation: 1

  • M Avcı, C B., MM Vanolya (2025)
    Proposed Framework for Sustainable Flood Risk-Based Design, Construction and Rehabilitation of Culverts and Bridges Under Climate Change
    Journal: Water, 17(11), Article 1663

  • M Mahmoody Vanolya, H Ağaçcıoğlu (2023)
    Assessing the Return Flow in Human-Induced Rivers Using Data-Driven and Hydrologic Models: Case Study – Ergene River Basin
    Journal: Stochastic Environmental Research and Risk Assessment, 37(12), pp. 4679–4693

  • T Çarpar, MM Vanolya, B Kocaman, AO Ilgaz, H Kürşat, et al. (2022)
    Flood Management for Istanbul Mega-City
    Conference: 4th Regional Conference on Diffuse Pollution & Eutrophication

  • T Çarpar, MM Vanolya, B Kocaman, TÖ Hancı (2022)
    Updating Intensity-Duration-Frequency (IDF) Curves for Istanbul Metropolitan Area Under Climate Change
    Conference: 11th National Hydrology Congress (11. Ulusal Hidroloji Kongresi)

  • T Çarpar, B Kocaman, MM Vanolya, TÖ Hancı (2022)
    Determination of Surface Runoff Coefficients for Istanbul Metropolitan Area
    Conference: 11th National Hydrology Congress

  • T Bostan, MM Vanolya, K Baltaci (2018)
    Consideration of Urbanization for Sustainable Floods Control in Kağıthane River, Istanbul
    Conference: 4th International Conference on Engineering and Natural Science

  • M Mahmoody Vanolya (2018)
    Sustainable Surface-Subsurface Water Use in Ergene River Basin, Turkey
    Conference: 9th International Congress on Environmental Modelling and Software

  • CM Kazezyılmaz-Alhan, S Gülbaz, MM Vanolya, E Saraçoğlu, et al. (2017)
    Hydrodynamic Model for Kağıthane Watershed via Comparing Wave Routing Methods
    Conference: 8th Atmospheric Sciences Symposium (ATMOS2017)

  • S Gülbaz, CM Kazezyılmaz-Alhan, MM Vanolya, HHM Gül (2017)
    Investigation of Land Use Effects by Using a Hydrodynamic Model for Ankara Stream Watershed
    Conference: RIVER BASINS 2017, p. 36

  • A Doğan, M Pacal, MM Vanolya (2017)
    Hydrological and Water Quality Modeling of Ergene River Basin of Turkey by SWAT