Zhongjun Yan | Energy and Sustainability | Best Researcher Award

Dr. Zhongjun Yan | Energy and Sustainability | Best Researcher Award

Dr. Zhongjun Yan | Energy and Sustainability | Associate Professor | Hunan University of Humanities Science and Technology | China

Dr. Zhongjun Yan is a distinguished scholar and lecturer at the School of Energy and Electrical Engineering, Hunan University of Humanities, Science and Technology. His professional journey reflects an enduring commitment to advancing renewable energy systems, sustainable heating and cooling technologies, and innovative energy storage methods. With strong academic credentials and a growing body of impactful research, Dr. Zhongjun Yan has established himself as an emerging leader in energy engineering. His work bridges theoretical modeling, computational methods, and experimental studies, enabling both scientific innovation and practical applications. He has become a significant contributor to the field of energy storage and solar-based systems, earning recognition through quality publications and participation in national-level and institutional research projects.

Professional Profile 

Education

Dr. Zhongjun Yan earned his doctoral degree in Heating, Ventilation, and Air-Conditioning Engineering from Hunan University, where his research was focused on the unconstrained melting process of phase change materials and the enhancement of heat transfer in thermal storage systems. His education combined advanced computational modeling, simulation techniques, and experimental validation, shaping a comprehensive expertise in sustainable energy. The doctoral thesis he completed contributed directly to the understanding of thermal storage efficiency and optimization methods in hot water tanks, providing new directions for future energy system development. This academic foundation has been critical to his current research on solar heating, air-conditioning, and the performance of energy storage units.

Experience

In his role as a lecturer, Dr. Zhongjun Yan has undertaken responsibilities that extend across teaching, mentoring, and research. His involvement in the Outstanding Youth Program of the Hunan Provincial Department of Education reflects his growing leadership in energy-related projects. He has contributed to the design and execution of research focusing on computational fluid dynamics (CFD), unconstrained melting phenomena, and heat transfer enhancement. His academic service also includes guiding students in advanced research methodologies and promoting innovation in energy storage and renewable systems. Moreover, Dr. Zhongjun Yan has presented his work at respected international conferences, where he has shared novel findings on the performance of phase change materials. Through these engagements, he has built professional connections that have broadened his collaborative network in the global energy research community.

Research Interest

Dr. Zhongjun Yan’s research interests lie at the intersection of renewable energy systems, thermal engineering, and phase change materials. His primary focus is on the heat transfer performance and optimization of phase change materials to improve the efficiency of thermal energy storage. He has dedicated extensive work to developing new approaches for enhancing the functionality of solar heating water systems and solar air-conditioning systems. Additionally, his research explores innovative modeling techniques to simulate unconstrained melting behaviors, allowing for more accurate predictions of system performance. His long-term vision is to create energy storage and distribution methods that can significantly reduce reliance on non-renewable resources and address the growing global demand for sustainable solutions.

Award

Dr. Zhongjun Yan has been actively involved in award-nominated research programs, most notably recognized through the Outstanding Youth Program by the Hunan Provincial Department of Education. This recognition highlights his innovative contributions to the study of energy storage systems and his leadership potential in advancing renewable technologies. His dedication to pushing the boundaries of engineering solutions in energy efficiency positions him as a strong candidate for international recognition and professional excellence awards.

Selected Publications

  • Performance enhancement of cylindrical latent heat storage units in hot water tanks via wavy design, Renewable Energy, published 2023, 55 citations.

  • A hybrid method for modeling the unconstrained melting of phase change material in hot water tanks, Energy and Buildings, published 2022, 38 citations.

  • Unconstrained melting of phase change material in cylindrical containers inside hot water tanks: Numerical investigation and effect of aspect ratios, Journal of Energy Storage, published 2022, 42 citations.

  • Impact of ultrasound on the melting process and heat transfer of phase change material, presented at International Conference on Applied Energy, published 2018, 27 citations.

Conclusion

Dr. Zhongjun Yan has made meaningful contributions to the field of renewable energy and thermal systems engineering. His work has advanced the knowledge of phase change materials, enhanced the performance of energy storage units, and contributed to the improvement of solar-based heating and cooling technologies. His consistent research output in respected journals, combined with his active role in academic projects and presentations at international conferences, highlights his professional dedication and scientific influence. Dr. Zhongjun Yan is not only a promising researcher but also a mentor and contributor to the broader academic and energy community. With a strong trajectory of impactful research and leadership potential, he represents the qualities of innovation, academic excellence, and societal contribution that make him highly deserving of recognition through this award nomination.

 

Francesca Vecchi | Energy and Sustainability | Best Researcher Award

Mrs. Francesca Vecchi | Energy and Sustainability | Best Researcher Award

Mrs. Francesca Vecchi | Energy and Sustainability | PhD | Polytechnic University of Bari | Italy

Francesca Vecchi is an Italian researcher specializing in sustainability engineering, renewable energy communities, and urban energy planning, with a strong academic background in urban and territorial planning. Currently pursuing her PhD at Politecnico di Bari in collaboration with Concordia University, she focuses on integrating renewable energy communities into urban areas through energy market mechanisms and policy analysis. Her research combines GIS-based tools, energy modelling, and solar analysis to optimize mixed-use urban neighbourhoods, with international experience as a visiting scholar in Canada at Toronto Metropolitan University and Concordia University. She has authored multiple publications in high-impact journals, contributed to notable projects such as ICELL, S2E, and Tools4Cities, and received several prestigious awards and scholarships, including the Ermenegildo Zegna Founder’s Scholarship and AiCARR Thesis Award. Francesca’s work is marked by interdisciplinary collaboration, innovation, and a commitment to advancing sustainable urban energy solutions.

Professional Profile 

Education  

Francesca Vecchi holds a PhD in Sustainability Engineering and Safety in Civil and Industrial Buildings from Politecnico di Bari, conducted in collaboration with Concordia University in Montreal, where her research focuses on integrating renewable energy communities into urban contexts. She earned a Master’s degree in Planning for the Global Urban Agenda from Politecnico di Torino, an international program aligned with the United Nations’ New Urban Agenda, complemented by her participation in the Alta Scuola Politecnica, a prestigious multidisciplinary program jointly run by Politecnico di Milano and Politecnico di Torino. She also completed a Bachelor’s degree in Urban, Territorial and Landscape-Environmental Planning from Politecnico di Torino, enriched by an Erasmus semester at Newcastle University in the United Kingdom. Her educational path began with a High School Diploma in languages from Liceo Scientifico Manfredo Fanti, which included a cultural exchange experience at Burlingame High School in San Francisco, USA.

Professional Experience

Francesca Vecchi has gained extensive professional and research experience across academic, international, and project-based environments. At Politecnico di Bari, she has been actively engaged in research on renewable energy communities, energy network management, and the integration of renewables in urban and coastal cities. As a visiting scholar at Concordia University in Montreal, she contributed to projects such as ICELL and S2E, developing energy remuneration and sharing policies, simulating energy communities, and integrating occupancy profiles into urban energy modelling tools. She also worked on demographic scenario simulations for Montreal districts, assessing both energy and financial impacts. Earlier, as a visiting scholar at Toronto Metropolitan University, she developed her master’s thesis on urban building energy modelling and solar assessment. Additionally, she served as a learning support teacher at Politecnico di Torino, assisting students with general learning needs. Her professional journey reflects a consistent commitment to interdisciplinary collaboration, technical innovation, and the advancement of sustainable urban energy systems.

Research Interest

Francesca Vecchi’s research interests center on the integration of renewable energy communities within urban environments, with a strong focus on energy market mechanisms, policy analysis, and sustainable urban planning. She is particularly engaged in developing GIS-based energy assessments, multi-scalar urban energy modelling, and solar analysis to optimize building and district-level performance. Her work explores mixed-use neighbourhoods, residential occupancy patterns, and the diffusion of renewable energy policies in different socio-political contexts. She is also interested in applying advanced simulation tools to assess energy and financial impacts, fostering cross-disciplinary approaches that bridge engineering, planning, and policy-making to accelerate the energy transition and support climate-resilient cities.

Award and Honor

Francesca Vecchi has received multiple awards and honors in recognition of her academic excellence, research contributions, and commitment to sustainability. She was awarded the AiCARR Thesis Award for outstanding work on energy efficiency and sustainable well-being, and earned a Certificate of Merit at the AIGE/IIETA International Conference for her research on solar analysis in urban contexts. She is a recipient of the prestigious Ermenegildo Zegna Founder’s Scholarship, enabling advanced research abroad, and has been honored by the Fondazione Cassa di Risparmio di Carpi for achieving top grades in both her master’s and bachelor’s studies. Her distinctions reflect not only her high academic performance but also the innovative and practical impact of her research in the fields of renewable energy and sustainable urban planning.

Publications Top Noted

National Geodatabase to Map Consumptions for Energy Transition
Year: 2025

Energy remuneration mechanisms for renewable energy communities: Insights from a mixed-use district
Year: 2025

Modelling the complexity of interconnected energy systems at different urban scales: a critical review
Year: 2025

Modelling tools for the assessment of Renewable Energy Communities
Year: 2024

Solar analysis for an urban context from GIS to block-scale evaluations
Year: 2024

Self-Sufficiency Building Energy Modelling from Urban to Block-Scale with PV Technology
Year: 2023

Data-driven urban building energy models for the platform of Toronto
Year: 2023

Conclusion

Francesca Vecchi stands out as a highly promising and deserving candidate for the Best Researcher Award. Her combination of technical skill, cross-cultural research experience, policy insight, and consistent scholarly output not only positions her as an emerging leader in renewable energy and sustainable urban systems but also aligns closely with the award’s aim to recognize impactful, forward-looking research that addresses global challenges.