Prof. Dr. Shaoyong Li | Thermal Management Systems | Best Paper Award

Prof. Dr. Shaoyong Li | Thermal Management Systems | Best Paper Award

Professor | Lanzhou University of Technology | China

Prof. Dr. Shaoyong Li is a distinguished researcher known for impactful contributions to advanced engineering and applied sciences, with extensive professional experience in academia and collaborative industrial research. His work focuses on innovative methodologies, interdisciplinary problem-solving, and high-quality scholarly output. His research interests span emerging technologies, system optimization, and data-driven engineering solutions, supported by strong analytical, computational, and technical skills. He has received multiple awards and honors recognizing excellence in research, innovation, and academic leadership. His contributions continue to influence both theoretical development and practical applications globally. He has achieved 203 Citations  28 Documents, 9 h-index.

 

Citation Metrics (Scopus)

300
200
100
0

203
Citations

28
Documents

9
h-index

Citations

Documents

h-index


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Nana Qi | Thermal Management Systems | Research Excellence Award

Assoc. Prof. Dr. Nana Qi  | Thermal Management Systems | Research Excellence Award

Associate Professor  | North China Electric Power University  |  China

Assoc. Prof. Dr. Nana Qi is an accomplished researcher with extensive professional experience in experimental and numerical investigations of coupled multiphase flow, heat and mass transfer, and chemical reaction systems across energy, chemical, and environmental engineering applications. Research interests focus on thermal management of power batteries, plasma-enhanced reactions, methane and ammonia utilization, flue-gas desulfurization, and advanced wastewater treatment. Research skills include CFD modeling, multi-objective optimization, reactor design, and performance evaluation of electrochemical and thermal systems. Notable contributions include optimizing lithium-ion battery thermal performance with significant energy-consumption reduction and advancing understanding of inter-phase transfer mechanisms in complex reactors. Awards and honors reflect sustained research excellence, impactful publications, patents, and leadership in funded projects, demonstrating strong academic and technological impact. She has achieved 291 Citations, 23 Documents, 9h-index.

 

Citation Metrics (Scopus)

400

300

100

0

291
Citations

23
Documents

9
h-index

Citations

Documents

h-index


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