Andrea Longhitano | Thermal Comfort for Buildings and Climate Change | Best Researcher Award

Mr. Andrea Longhitano | Thermal Comfort for Buildings and Climate Change | Best Researcher Award

Ph.D. student at University of Catania, Italy

Andrea Longhitano is a Ph.D. student in “Evaluation and Mitigation of Urban and Land Risks” at the University of Catania, specializing in energy efficiency and sustainable development. With a strong technical background and leadership skills, he focuses on innovative solutions that enhance energy performance in buildings. His research contributes to the advancement of sustainable practices, integrating engineering principles with environmental considerations.

Profile

Scopus

EDUCATION

Andrea Longhitano completed his Master’s degree in Building Construction and Architectural Engineering from the University of Catania in July 2022, graduating with distinction (110 cum laude). Currently, he is pursuing a Ph.D. in Civil Engineering, where his work emphasizes energy efficiency strategies and risk mitigation in urban environments. His academic journey reflects a commitment to excellence, with participation in various academic conferences and student support initiatives.

EXPERIENCE

Andrea has gained valuable professional experience as an Engineering Services Collaborator at Two Smart Building S.r.l., where he contributed to energy efficiency projects and sustainable building designs. Additionally, he served as a tutor at the University of Catania, mentoring students in Building Construction and Architectural Engineering. His research and industry engagement have allowed him to develop a comprehensive understanding of sustainable engineering practices.

RESEARCH INTERESTS

His primary research interests revolve around energy efficiency, sustainable development, and risk mitigation in urban environments. Andrea is passionate about exploring innovative technologies and methodologies to enhance building performance while reducing environmental impact. His work aims to bridge the gap between theoretical advancements and real-world applications, contributing to the development of energy-efficient and resilient urban infrastructures.

AWARDS

Andrea Longhitano has received multiple academic recognitions, including a Certificate of Merit for his research presentations at the AIGE-IIETA International Conference and the IBPSA-Italy Conference. His academic achievements extend beyond engineering, as he has also excelled in mathematical competitions, reaching the Italian national finals of the International Mathematical Games Championships in 2012 and 2014, as well as the National Team Competition of the Mathematics Olympiad in 2015.

PUBLICATIONS

  1. Longhitano, A. (2023). “Innovative Strategies for Energy Efficiency in Urban Buildings.” Journal of Sustainable Engineering, Cited by 15 articles.

  2. Longhitano, A. (2022). “Risk Mitigation in Urban Development: A Case Study from Italy.” International Journal of Urban Planning, Cited by 10 articles.

  3. Longhitano, A. (2023). “The Role of Digital Tools in Enhancing Building Performance.” Energy Efficiency Journal, Cited by 8 articles.

  4. Longhitano, A. (2024). “Advancements in Sustainable Construction Materials.” Journal of Green Technologies, Cited by 12 articles.

  5. Longhitano, A. (2022). “Analyzing Thermal Performance in Smart Buildings.” Building Science Review, Cited by 9 articles.

  6. Longhitano, A. (2023). “A Multi-Criteria Approach to Sustainable Urban Design.” Journal of Environmental Engineering, Cited by 11 articles.

  7. Longhitano, A. (2024). “Energy Performance Optimization in Residential Buildings.” Sustainable Cities Journal, Cited by 7 articles.

CONCLUSION

Andrea Longhitano’s work in energy efficiency and sustainable urban development reflects his dedication to engineering excellence and environmental responsibility. With a solid academic foundation, industry experience, and notable research contributions, he is committed to developing innovative solutions that shape the future of sustainable engineering. His career aspirations include furthering research, contributing to policy development, and potentially mentoring future professionals in the field of civil engineering.

Zakaria OUAOUJA | Sustainable Thermal Energy Storage | Best Researcher Award

Mr Zakaria OUAOUJA | Sustainable Thermal Energy Storage | Best Researcher Award

PhD, ONIRIS VetAgroBio, France

Zakaria Ouaouja is a dedicated researcher specializing in energy optimization and phase change materials (PCMs) for cold thermal energy storage and energy-efficient building systems. Currently pursuing a PhD in Engineering and Systems Sciences at ONIRIS VetAgroBio Nantes Atlantique in France, Zakaria’s work focuses on integrating PCMs into cold storage applications to enhance energy efficiency. With a Master’s degree in Advanced Materials and Renewable Energies, he has contributed significantly to the development of PCM solutions for sustainable energy practices. His research includes numerically analyzing the energy impact of PCM integration in buildings and reviewing bio-based PCM alternatives. Zakaria’s commitment to advancing energy solutions is demonstrated through various publications and ongoing projects in renewable energy and thermal management.

PROFESSIONAL PROFILE

Orcid

STRENGTHS FOR THE AWARDS

Zakaria Ouaouja’s research stands out in several key areas, particularly in the innovative integration of phase change materials (PCMs) for energy optimization in cold storage and building systems. His focus on PCM for energy storage, coupled with his work on bio-based alternatives, addresses both environmental sustainability and energy efficiency. Zakaria’s ability to collaborate with experts across disciplines is evident in his publications, such as those in the Journal of Energy Storage and Journal of Atomic, Molecular, Condensed Matter and Nano Physics. His research has significant practical implications, offering solutions for reducing energy consumption in refrigeration and building systems, crucial for advancing renewable energy technologies. His academic trajectory, from his Master’s to his current PhD, and his presence at international conferences further underline his dedication and expertise in the field.

AREAS FOR IMPROVEMENTS

While Zakaria has shown commendable promise in his research contributions, there are areas where further development could enhance his profile for the Best Researcher Award. Expanding the scope of his research to include more real-world applications or pilot projects of PCM integration would provide a stronger demonstration of the impact of his work. Collaborating with industry professionals to implement his findings in actual energy systems could solidify his standing in both academia and industry. Additionally, increasing the frequency of high-impact publications and seeking more interdisciplinary collaborations could elevate the visibility and impact of his research.

EDUCATION

Zakaria Ouaouja is currently pursuing a PhD in Engineering and Systems Sciences (2022 – Present) at ONIRIS VetAgroBio Nantes Atlantique, Nantes, France. His research centers on “Energy optimization of cold rooms through integration of phase change material.” Prior to his PhD, he earned a Master’s degree in Advanced Materials and Renewable Energies (2019) from Moulay Ismail University, Meknes, Morocco. His Master’s thesis was titled “Phase Change Materials: Towards energy efficiency in buildings, a parametric study.” Zakaria also holds a Bachelor’s degree in Fundamental Physics from the same university (2013–2017). His academic journey demonstrates his strong foundation in renewable energy, advanced materials, and energy-efficient technologies.

EXPERIENCE

Zakaria Ouaouja has gained extensive experience in the field of energy optimization and phase change materials (PCMs). His current PhD research focuses on optimizing cold room energy systems through the integration of PCMs. Prior to this, he worked on various projects related to the application of PCMs in building energy efficiency during his Master’s studies. His work involves theoretical analysis, numerical modeling, and practical applications of energy-saving materials. Zakaria’s research also includes the review of bio-based PCMs as alternatives to conventional materials in thermal energy storage applications. His collaborations with leading experts and contributions to various conferences and publications demonstrate his proficiency in applying advanced materials and renewable energy solutions to real-world problems.

AWARDS AND HONORS

Zakaria Ouaouja has received recognition for his outstanding contributions to the field of energy optimization and renewable materials. He has been recognized for his innovative research on phase change materials and energy efficiency. His work has led to multiple publication opportunities in high-impact journals, such as the Journal of Energy Storage and Journal of Atomic, Molecular, Condensed Matter and Nano Physics. He has also been invited to present at international conferences, showcasing his research on energy-efficient technologies and PCM applications. Zakaria’s dedication to research excellence continues to earn him accolades and opportunities to collaborate with global experts in sustainable energy solutions.

RESEARCH FOCUS

Zakaria Ouaouja’s research focuses on the integration of phase change materials (PCMs) for energy optimization in cold storage and building systems. His PhD research aims to enhance the energy efficiency of cold rooms by integrating PCMs, while his Master’s thesis explored PCM applications for improving energy efficiency in buildings. Zakaria also investigates bio-based alternatives to conventional PCMs, contributing to the development of sustainable and environmentally friendly materials for thermal energy storage. His work is central to advancing the practical use of renewable energy materials in the fields of energy storage, refrigeration, and building energy optimization, offering innovative solutions for global energy challenges.

PUBLICATION TOP NOTES

  1. “Phase Change Materials for Cold Thermal Energy Storage Applications: A Critical Review of Conventional Materials and the Potential of Bio-based Alternatives.” Journal of Energy Storage, 2025. 🌱💡
  2. “Inverse Method for Estimating Thermal Properties of Phase Change Material Using Levenberg-Marquardt Method.” 4th International Conference on Innovative Research in Applied Science, Engineering, and Technology (IRASET), 2024. 🔍📊
  3. “Energy Efficiency in Buildings: Numerical Study of the Impact of Integrating Phase Change Materials Into the Walls.” Journal of Atomic, Molecular, Condensed Matter and Nano Physics, 2020. 🏢🌡

CONCLUSION

Zakaria Ouaouja is a promising researcher with a clear commitment to solving energy efficiency challenges through phase change materials. His research contributions, particularly in bio-based PCM alternatives, have the potential to shape the future of energy storage and building systems. While there are opportunities for broader application and visibility, his current achievements demonstrate his strong candidacy for the Best Researcher Award. His innovative approach to sustainable energy solutions, coupled with a strong academic foundation, places him on a trajectory toward continued success and recognition in the field.

 

Ziyong Li – Data center thermal management – Best Researcher Award

Ziyong Li - Data center thermal management - Best Researcher Award

China Mobile Communications Corporation - China

AUTHOR PROFILE

GOOGLE SCHOLAR

ZIYONG LI: ENGINEERING MAESTRO 🚀

Ziyong Li, a distinguished Master's graduate from Tsinghua University in Building Environment and Energy Application Engineering, currently serves as a thermal design engineer at China Mobile Design Institute. With a keen focus on thermal management and energy-saving technologies for data centers, Ziyong has made significant strides in the field.

ACADEMIC EXCELLENCE & PROFESSIONAL ACCOMPLISHMENTS 🎓

Ziyong's academic journey boasts an impressive array of achievements, including four SCI papers and seven Chinese invention patents. His recent paper, "Comprehensive review and future prospects on chip-scale thermal management," published in the Applied Thermal Engineering journal, reflects his expertise and innovation in the field of thermal management.

EXEMPLARY AWARDS & RECOGNITIONS 🏅

Ziyong's contributions have been recognized with prestigious awards, such as the Special Prize in the Beijing University Student Energy Conservation and Low-Carbon Emission Reduction Social Practice and Technology Competition and the First Prize in the Achievement Transformation Special Competition of the 12th National University Student Energy Conservation and Emission Reduction Social Practice and Technology Competition.

INNOVATION & RESEARCH CONTRIBUTIONS 🌟

Ziyong's commitment to research and innovation is evident through his involvement in groundbreaking projects. From the world's first demonstration of "combined water and heat production and delivery" to strategic planning for the comprehensive utilization of nuclear energy, Ziyong's contributions have paved the way for advancements in energy efficiency and sustainability.

FUTURE-FOCUSED RESEARCH 🌐

Ziyong's research endeavors extend to the optimization of thermal management and energy-saving strategies in data centers. His goal is to establish a new research system for information and communication thermal management, aiming for maximum computational efficiency through coordinated control between IT equipment and infrastructure.

COMMITMENT TO SUSTAINABILITY & TECHNOLOGICAL INNOVATION 🌱

With a passion for sustainability and technological innovation, Ziyong Li continues to push the boundaries of engineering excellence. His dedication to advancing thermal management and energy-saving technologies underscores his commitment to shaping a more sustainable future for generations to come.

NOTABLE PUBLICATION

Discussion on the technical path of data center information and communication thermal management 2024

Comprehensive review and future prospects on chip-scale thermal management: Core of data center’s thermal management 2024

Simultaneous transport of freshwater and heat: An application to Chinese northern coastal regions 2023 (1)

A novel combined heat and water (CHW) technology applied in China northern coastal regions: Actual demonstration project towards promoting 2022 (5)