Dr. Ron Mahabir | Energy | Research Excellence Award | 4310

Dr. Ron Mahabir | Energy | Research Excellence Award

Lecturer | University of Liverpool | United Kingdom

Dr Ron Mahabir is a Lecturer in Geographic Data Science at the University of Liverpool and an internationally recognized scholar in geographic data science, geoinformatics, and computational social science. He holds doctoral training in Earth Systems and Geoinformation Science, complemented by advanced degrees in geoinformatics and computer and information systems, providing a strong interdisciplinary foundation. His professional experience spans academic leadership, programme direction, doctoral training coordination, and affiliated roles in computational and data science, alongside postdoctoral research and teaching appointments. His research focuses on spatial data science, social media analytics, crowdsourcing, environmental and coastal resilience, public health analytics, and applied artificial intelligence, with publications in leading journals across geography, data science, environmental studies, and computational social science. His work demonstrates methodological innovation, real-world relevance, and sustained scholarly impact, reflected in strong citation performance and collaborative, cross-disciplinary contributions. He is widely engaged in peer review and scholarly service, with growing recognition as a leader shaping data-driven geographic research and future advances in socially relevant spatial analytics.

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Aurang Zaib | Energy | Research Excellence Award | 4308

Mr. Aurang Zaib | Energy | Research Excellence Award

Research Assistant | NUST College of Electrical and Mechanical Engineering | Pakistan

Mr Aurang Zaib is a Mechanical Engineer and Research Assistant at NUST, specializing in thermo-fluid sciences, computational fluid dynamics, renewable energy systems, and thermal energy storage. He holds postgraduate and undergraduate degrees in mechanical engineering with advanced specialization in thermo-fluids, CFD, zero-carbon technologies, and phase change material based heat exchanger systems. His professional experience includes developing and simulating national-scale renewable energy models, optimizing sustainable energy configurations, and conducting experimental and numerical investigations of solar PCM heat exchangers for energy-efficient buildings. He has also contributed to heat transfer enhancement studies and practical energy systems through industrial research and engineering training in energy-intensive sectors. His research focuses on low-carbon technologies, energy system modeling, high-performance buildings, CFD-based thermal analysis, and solar thermal storage, with peer-reviewed publications earning academic citations. His work has been recognized through institutional publication awards and multiple merit-based academic honors, reflecting strong research impact, technical depth, and future leadership potential in sustainable energy research.

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Abu Talha Aqueel Ahmed | Energy | Research Excellence Award

Assist. Prof. Dr. Abu Talha Aqueel Ahmed | Energy | Research Excellence Award

Dongguk University | South Korea

Assistant Prof. Dr. Abu Talha Aqueel Ahmed is a faculty member in the Division of Physics and Semiconductor Science at Dongguk University, Seoul, specializing in advanced materials for energy storage, electrocatalysis, and semiconductor applications. He holds a Ph.D. in physics with a focus on nanostructured functional materials, supported by prior degrees in the physical sciences that established his foundation in materials synthesis, characterization, and device applications. His professional experience includes leading research projects in nanomaterials engineering, mentoring student researchers, and contributing to collaborative initiatives spanning energy storage systems, hydrogen evolution reactions, and optoelectronic materials. Dr. Ahmed’s research centers on designing high-performance transition-metal chalcogenides, oxides, and carbon-based nanostructures, with significant contributions reflected in numerous peer-reviewed publications, including highly cited works on CuCo₂S₄ electrocatalysts, nanohoneycomb rGO foams, morphology-engineered oxides, and stabilized halide perovskites. His scholarly output exceeds several dozen publications in reputable journals, supported by substantial citation metrics that demonstrate the impact of his research. He has been honored with recognitions for research excellence and contributes to the scientific community through peer-review activities, editorial engagements, and participation in professional societies related to materials science, nanotechnology, and semiconductor physics. His work exemplifies innovation, leadership, and sustained commitment to advancing next-generation energy and semiconductor technologies.

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Amirmohammad Behzadi | Energy | Best Researcher Award

Dr. Amirmohammad Behzadi | Energy | Best Researcher Award

KTH Royal Institute of Technology | Sweden

Dr. Amirmohammad Behzadi is a researcher specializing in intelligent thermal energy systems, recognized for advancing AI-driven optimization, predictive control, reinforcement learning, and physics-informed digital-twin modeling for building and district-scale heating and cooling networks. He holds advanced degrees in mechanical engineering and fluid and climate theory with a focus on energy conversion and system optimization. His professional experience spans research roles in leading institutions, where he has developed model-based control frameworks, machine-learning-enabled optimization tools, and integrated thermal–power system models while contributing to major national and international projects on smart, low-carbon, and resilient energy systems. He has led multi-institutional collaborations, coordinated national participation in global research initiatives, supervised students across levels, and contributed extensively to proposal development and funding acquisition. His publication record includes numerous first-author articles in high-impact journals, influential book chapters, and methods that have shaped the design and control of next-generation thermal networks. His research achievements are evidenced by substantial citation metrics, widespread academic influence, and recognition among the world’s top researchers. He has received distinctions for research excellence and contributed to award-winning projects acknowledged by prominent scientific and engineering bodies. His active participation in international collaborations and professional organizations further highlights his leadership and dedication to advancing sustainable, data-driven, and climate-resilient energy solutions.

Profiles: Google Scholar | Scopus | ORCID

Featured Publications

1. Habibollahzade, A., Gholamian, E., Ahmadi, P., & Behzadi, A. (2018). Multi-criteria optimization of an integrated energy system with thermoelectric generator, parabolic trough solar collector and electrolysis for hydrogen production. International Journal of Hydrogen Energy.

2. Habibollahzade, A., Gholamian, E., & Behzadi, A. (2019). Multi-objective optimization and comparative performance analysis of hybrid biomass-based solid oxide fuel cell/solid oxide electrolyzer cell/gas turbine using different configurations. Applied Energy, 233, 985–1002.

3. Behzadi, A., Habibollahzade, A., Zare, V., & Ashjaee, M. (2019). Multi-objective optimization of a hybrid biomass-based SOFC/GT/double effect absorption chiller/RO desalination system with CO₂ recycle. Energy Conversion and Management, 181, 302–318.

4. Behzadi, A., Gholamian, E., Houshfar, E., & Habibollahzade, A. (2018). Multi-objective optimization and exergoeconomic analysis of waste heat recovery from Tehran’s waste-to-energy plant integrated with an ORC unit. Energy.

5. Habibollahzade, A., Gholamian, E., Houshfar, E., & Behzadi, A. (n.d.). Multi-objective optimization of biomass-based solid oxide fuel cell integrated with Stirling engine and electrolyzer. [Journal name not specified].

Dr. The nominee’s work advances intelligent, low-carbon thermal energy systems by integrating AI, data-driven optimization, and physics-informed modeling to create more efficient, resilient, and autonomous urban energy infrastructures. His contributions support global sustainability goals by enabling cleaner, smarter heating and cooling networks that reduce emissions and improve energy reliability. Through innovative research and international collaboration, he drives technological progress that benefits science, industry, and society.

Junhyuk Nam | Distributed Energy System | Best Researcher Award

Mr. Junhyuk Nam | Distributed Energy System | Best Researcher Award

Junhyuk Nam | Soongsil University | South Korea

Mr. Junhyuk Nam is an emerging researcher in the field of electrical engineering, specializing in distribution system operations, voltage stability analysis, and the integration of distributed energy resources (DERs). His research expertise extends to virtual power plant (VPP) platform design, economic analysis, and data-driven power system studies utilizing advanced machine learning techniques such as logistic regression. With a growing publication record that includes multiple papers in high-impact international and domestic journals such as Energies, IEEE Access, and The Transactions of the Korean Institute of Electrical Engineers (KIEE), he has contributed valuable insights into the assessment of voltage margins, optimization of renewable energy integration, and the mitigation of grid challenges associated with electric vehicle (EV) charging and photovoltaic (PV) penetration. His collaborative research engagements with leading national institutions—including the Korea Institute of Energy Technology Evaluation and Planning, the Korea Energy Research Institute, and the Korea Electrotechnology Research Institute—reflect his interdisciplinary approach and commitment to advancing sustainable energy solutions. Mr. Nam’s work has earned several prestigious awards recognizing his excellence in academic research and contributions to the development of innovative strategies for enhancing power system reliability and efficiency. With a citation count indicating growing international recognition, his research continues to inform both academia and industry on practical pathways to achieving stable and economically viable smart grid systems. His technical proficiency in tools such as OpenDSS and Python further strengthens his ability to bridge theoretical modeling with real-world system applications. Through continued innovation and collaboration, Mr. Nam is poised to make a lasting impact on the global transition toward intelligent, data-driven, and resilient energy infrastructures.

Profiles: Scopus | ORCID

Featured Publications

1. J.-H. Nam, S.-J. Park, D.-I. Cho, Y.-J. Cho, and W.-S. Moon, “Assessing the Suitability of Distributed Energy Resources in Distribution Systems Based on the Voltage Margin: A Case Study of Jeju, South Korea,” IEEE Access, 2025.

2. J.-H. Nam, D.-I. Cho, Y.-J. Cho, and W.-S. Moon, “Determination of Voltage Margin Decision Boundaries via Logistic Regression for Distribution System Operations,” Energies, 2025.

Mr. Junhyuk Nam’s research advances the stability and efficiency of modern power systems through innovative analysis of distributed energy resources and voltage management. His work supports the global transition toward sustainable, data-driven smart grids, contributing to cleaner energy integration and enhanced grid reliability for future energy infrastructures.

Afsin Gungor | Energy | Best Review Article Award

Prof. Dr. Afsin Gungor | Energy | Best Review Article Award 

Faculty member at Akdeniz University, Turkey

Prof. Dr. Afsin Gungor is a distinguished academic at Akdeniz University’s Faculty of Engineering, specializing in mechanical engineering with a strong focus on renewable energy, thermodynamics, and sustainable technologies. With a Ph.D. from Istanbul Technical University, he has held key academic and administrative roles, including department head and research center director. His prolific research output includes over 40 SCI-indexed publications in recent years, addressing cutting-edge topics such as solar-assisted systems, refrigeration technologies, AI in thermodynamics, and environmental sustainability. Prof. Gungor also contributes to industry through Baybora Energy, reflecting his commitment to practical innovation. He serves on national and international scientific committees and is actively involved with ASHRAE and other professional bodies. His interdisciplinary expertise spans energy systems, nanotechnology, fluid mechanics, and climate change. With ongoing research, patent activity, and leadership in engineering education, Prof. Gungor stands as a leading figure in sustainable energy solutions and academic excellence in Turkey.

Professional Profile

Google Scholar
Scopus Profile
ORCID Profile

Education

Prof. Dr. Afsin Gungor received his undergraduate and graduate education in mechanical engineering, culminating in a Ph.D. from Istanbul Technical University—one of Turkey’s leading engineering institutions. His academic training focused on thermodynamics, energy systems, and heat transfer, laying the foundation for a career dedicated to sustainable energy technologies. During his doctoral studies, he engaged in cutting-edge research and developed a strong foundation in analytical modeling, experimental design, and computational simulations. He further enhanced his expertise through postdoctoral work and collaborations with other academic and industrial institutions. His education not only provided technical depth but also broadened his vision toward interdisciplinary applications, especially in renewable energy and environmental sustainability. These academic milestones equipped him with the tools to bridge theory with practice and sparked his passion for applying scientific knowledge to solve real-world energy challenges.

Professional Experience

Prof. Dr. Afsin Gungor has held multiple prestigious positions at Akdeniz University, including faculty member, department head, and director of research centers focusing on renewable energy and sustainable engineering. In addition to his academic roles, he has contributed to industrial applications through consultancy and co-founding Baybora Energy, a company engaged in energy-efficient technologies. His career spans over two decades of teaching, research, and administrative leadership. As a professor in the Mechanical Engineering Department, he has supervised numerous graduate theses and led key national and international projects. He is also active in editorial and advisory boards for scientific journals and institutions. His involvement in both academic and applied fields has helped foster innovation at the interface of university research and industrial needs. Through his professional journey, Prof. Gungor has demonstrated a commitment to excellence, practical problem-solving, and the development of forward-thinking engineering solutions for energy and environmental systems.

Research Interest

Prof. Gungor’s research focuses on energy efficiency, thermodynamics, and renewable energy systems, particularly solar, wind, and hybrid systems. He is deeply involved in modeling and optimizing advanced energy technologies, such as solar-assisted refrigeration, heat pump systems, and nanofluids in thermal applications. His work frequently integrates artificial intelligence and machine learning into thermodynamic analysis to enhance the performance and predictive capability of energy systems. Environmental sustainability, carbon footprint reduction, and climate-resilient technologies also rank high among his research priorities. Over the years, he has published extensively in SCI-indexed journals and has presented at top international conferences. His interdisciplinary research bridges mechanical engineering, materials science, and environmental studies. With ongoing projects involving smart energy management and hydrogen technologies, Prof. Gungor remains at the forefront of innovative solutions for the energy transition. His contributions help shape the future of clean energy systems in both academic and industrial spheres.

Award and Honor

Prof. Dr. Afsin Gungor has earned multiple accolades in recognition of his academic and research excellence. He has received national science and technology awards, research grants, and university commendations for his contributions to renewable energy and thermodynamics. His publications have been widely cited, underscoring the impact of his work within the scientific community. He has also been honored by professional bodies such as ASHRAE (American Society of Heating, Refrigerating and Air-Conditioning Engineers) and Turkish academic organizations for outstanding service and scholarly achievement. In addition, he has served on review panels for prestigious funding bodies and international journals. His role as an advisor and committee member in several national R&D initiatives demonstrates the high regard in which he is held by peers and institutions alike. These awards reflect not only his technical accomplishments but also his dedication to mentoring young researchers and advancing sustainable engineering practices.

Conclusion

Prof. Dr. Afsin Gungor exemplifies the blend of academic rigor, innovative research, and practical impact. His journey from a dedicated engineering student to a leading academic and energy expert at Akdeniz University illustrates a lifelong commitment to solving critical global challenges through science and technology. With a strong foundation in thermodynamics and renewable energy, his work continues to influence both policy and practice. His professional career, marked by leadership roles and impactful research, has made significant contributions to sustainable energy development in Turkey and beyond. Through his mentorship, publications, and industry collaborations, he fosters knowledge transfer and innovation. Recognized by awards and respected by peers, Prof. Gungor remains a key figure in energy systems research and education. His vision aligns with global sustainability goals, making his efforts not only academically significant but also societally relevant. His career stands as a model for future engineers aiming to drive positive environmental and technological change.

Publications Top Notes

  • Title: Experimental and numerical study of the effect of integrating plus-shaped perforated baffles to solar air collector in drying application
    Authors: A Khanlari, HÖ Güler, AD Tuncer, C Şirin, YC Bilge, Y Yılmaz, A Güngör
    Year: 2020
    Citations: 203

  • Title: Performance enhancement of a greenhouse dryer: Analysis of a cost-effective alternative solar air heater
    Authors: A Khanlari, A Sözen, C Şirin, AD Tuncer, A Gungor
    Year: 2020
    Citations: 193

  • Title: Two-dimensional coal combustion modeling of CFB
    Authors: A Gungor, N Eskin
    Year: 2008
    Citations: 138

  • Title: Energy-exergy and enviro-economic survey of solar air heaters with various air channel modifications
    Authors: AD Tuncer, A Khanlari, A Sözen, EY Gürbüz, C Şirin, A Gungor
    Year: 2020
    Citations: 128

  • Title: Experimental and CFD survey of indirect solar dryer modified with low-cost iron mesh
    Authors: HÖ Güler, A Sözen, AD Tuncer, F Afshari, A Khanlari, C Şirin, A Gungor
    Year: 2020
    Citations: 116

  • Title: Drying municipal sewage sludge with v-groove triple-pass and quadruple-pass solar air heaters along with testing of a solar absorber drying chamber
    Authors: A Khanlari, A Sözen, F Afshari, C Şirin, AD Tuncer, A Gungor
    Year: 2020
    Citations: 97

  • Title: Two-dimensional biomass combustion modeling of CFB
    Authors: A Gungor
    Year: 2008
    Citations: 92

  • Title: Prediction of SO₂ and NOₓ emissions for low-grade Turkish lignites in CFB combustors
    Authors: A Gungor
    Year: 2009
    Citations: 90

  • Title: Effects of ambient conditions on solar assisted heat pump systems: a review
    Authors: K Sezen, AD Tuncer, AO Akyuz, A Gungor
    Year: 2021
    Citations: 85

  • Title: Hydrodynamic modeling of a circulating fluidized bed
    Authors: A Gungor, N Eskin
    Year: 2007
    Citations: 74

  • Title: Testing of a novel convex-type solar absorber drying chamber in dehumidification process of municipal sewage sludge
    Authors: AD Tuncer, A Sözen, F Afshari, A Khanlari, C Şirin, A Gungor
    Year: 2020
    Citations: 72

  • Title: Hydrogen production via sodium borohydride hydrolysis catalyzed by cobalt ferrite anchored nitrogen-and sulfur co-doped graphene hybrid nanocatalyst
    Authors: H Jafarzadeh, C Karaman, A Güngör, O Karaman, PL Show, P Sami, …
    Year: 2022
    Citations: 67

    • Title: Comparison of solar assisted heat pump systems for heating residences: A review
      Authors: K Sezen, A Gungor
      Year: 2023
      Citations: 49

    • Title: Assessing the implementation levels of oil palm waste conversion methods in Malaysia and the challenges of commercialisation
      Authors: HA Umar, SA Sulaiman, MAM Said, A Gungor, M Shahbaz, M Inayat, …
      Year: 2021
      Citations: 49

    • Title: An overview of Eulerian CFD modeling and simulation of non-spherical biomass particles
      Authors: A Ullah, K Hong, Y Gao, A Gungor, M Zaman
      Year: 2019
      Citations: 49

Dimuthu Punsara Colambage | Energy Economics | Young Scientist Award

Mr. Dimuthu Punsara Colambage | Energy Economics | Young Scientist Award 

Postgraduate Student, University of Moratuwa, Sri Lanka

Dimuthu Punsara Colambage is a dedicated electrical engineer, researcher, and lecturer from Sri Lanka, passionate about various aspects of Electrical Engineering, particularly in Energy, Computer, Electrical, and Electronic Engineering. He thrives in diverse environments, addressing real-world challenges and aspiring to pursue a PhD to enhance his analytical and critical thinking skills. 🌍⚡

Publication Profile

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Education

Dimuthu earned his Bachelor of Science in Engineering (Hons) with a specialization in Electrical Engineering from the University of Moratuwa, Sri Lanka, in 2016, followed by a Master of Science in 2018. He is currently completing his Master of Philosophy, further solidifying his academic credentials in the field. 🎓📚

Experience

With extensive teaching experience, Dimuthu has served as a Lecturer and Academic Coordinator at the Royal Institute of Colombo and the University of Vocational Technology, where he taught a range of modules in Electrical Engineering. He has also worked as a Research Assistant at the University of Moratuwa and interned as a Trainee Electrical Engineer at Ceylon Electricity Board and Resource Management Associates. 👨‍🏫💼

Research Focus

His research primarily focuses on addressing practical problems in electrical engineering, with notable contributions to topics such as electricity generation costs, economic impacts of electricity interruptions, and the value of water in generation planning. His work aims to contribute to the sustainable energy landscape in Sri Lanka. 🔍💡

Awards and Honours

Dimuthu has been recognized for his research excellence, receiving multiple Senate Research Grant (SRC) awards and a National Science Foundation (NSF) travel grant. His academic contributions underscore his commitment to advancing knowledge in electrical engineering. 🏆🎖️

Publication Top Notes

Dimuthu has published several impactful articles, including:

Analysing the Impact of Diverse Factors on Electricity Generation Cost: Insights from Sri Lanka (2024) in Energy Journal.

Economic Impact of Electricity Interruptions: A Case Study Based on Sri Lanka (2022) in American Journal of Electrical Power and Energy Systems.

A Novel Approach of Exploring Water Value: A Study based on Sri Lanka (Accepted: 2024) in Engineer Journal of IESL.

Exploring the Dynamic Landscape of Economic Dispatch: A Comprehensive Review of Stochastic Programming Techniques (Submitted to Renewable Energy Journal).

Seasonal and Time-of-Day Electricity Costing: A Case Study of Sri Lanka (Submitted to The Electrical Engineering Journal).

MATIEWOS MEKONEN ABERA | Energy | Best Research Article Award

Mr. MATIEWOS MEKONEN ABERA | Energy | Best Research Article Award

University Lecturer and Researcher at Aksum University, Ethiopia

Matiewos Mekonen Abera is an accomplished lecturer and researcher at Aksum University, Shire Campus, Ethiopia. With extensive experience in sustainable energy and agricultural engineering, he has a proven track record in both academia and community service. Matiewos is passionate about renewable energy technologies and has made significant contributions to his field through research, teaching, and practical applications.

Profie

Scopus Profile

Education 🎓

Matiewos holds a Master of Science (MSc) degree in Mechanical Engineering with a specialization in Sustainable Energy Engineering from Jimma University, Ethiopia (2019). His academic journey began with a Bachelor of Science (BSc) degree in Agricultural Engineering and Mechanization from Hawassa University, Ethiopia (2010). His exceptional academic performance is highlighted by a GPA of 3.85/4.00 during his MSc studies.

Experience 💼

Matiewos’s career spans several important roles, including serving as a design engineer for Tigray Water Resource, Mines, and Energy Office. Later, he worked as an assistant researcher at Tigray Agricultural Research Center before joining Aksum University as a lecturer. His responsibilities include teaching, advising, supervising student research projects, and conducting renewable energy research, particularly focusing on solar and wind energy systems.

Research Interests 🔬

Matiewos’s research interests center on sustainable and renewable energy systems. He is particularly focused on solar thermal and photovoltaic (PV) energy, off-grid power, hybrid energy systems, and the optimization of energy storage solutions. His notable work includes the design and simulation of energy management systems, with a strong interest in solar thermal storage and renewable energy techno-economics.

Awards and Achievements 🏆

Matiewos has received numerous awards and recognitions for his work. These include a Certificate of Participation in SPSS Statistical Software training (2024), a Higher Diploma for Teacher Educators (2016), and multiple certificates of recognition for his contributions to community services and research. He was also awarded a scholarship for outstanding academic performance in 2007 by the SEOSAN Scholarship Foundation.

Publications Top Notes📚

Matiewos has published in reputable scientific journals. His recent work includes:

  1. Assessment of micro-scale heat exchangers efficiency using lattice Boltzmann method and design of experiments
    Authors: Ferhi, M., Abidi, S., Djebali, R., Mebarek-Oudina, F.
    Journal: Energy and Built Environment
    Year: 2024
    Citations: 3
  2. Computational simulation of Casson hybrid nanofluid flow with Rosseland approximation and uneven heat source/sink
    Authors: Ramasekhar, G., Mebarek-Oudina, F., Suneetha, S., Vaidya, H., Selvi, P.D.
    Journal: International Journal of Thermofluids
    Year: 2024
    Citations: 0
  3. Computational Elucidation of Electromagnetic Effects on Peristaltic Nanofluid Transport in Microfluidics: Intersections of CFD, Biomedical and Nanotechnology Research
    Authors: Vaidya, H., Choudhari, R., Mebarek-Oudina, F., Kalal, S., Shivaleela
    Journal: CFD Letters
    Year: 2024
    Citations: 1
  4. Integrated analysis of electroosmotic and magnetohydrodynamic peristaltic pumping in physiological systems: Implications for biomedical applications
    Authors: Choudhari, R., Tripathi, D., Vaidya, H., Khan, S.U., Ramesh, K.
    Journal: ZAMM Zeitschrift fur Angewandte Mathematik und Mechanik
    Year: 2024
    Citations: 0
  5. Travelling wave solution of fourth order reaction diffusion equation using hybrid quintic hermite splines collocation technique
    Authors: Priyanka, P., Mebarek-Oudina, F., Sahani, S., Arora, S.
    Journal: Arabian Journal of Mathematics
    Year: 2024
    Citations: 2

Conclusion 🌟

Matiewos Mekonen Abera stands out as a dedicated academic, researcher, and community leader in the fields of energy and agricultural engineering. His commitment to advancing sustainable energy solutions is evident in his research, teaching, and community engagement, making him an excellent candidate for the World Top Scientist Computation.