Fanghua Li | Geothermal Energy | Best Researcher Award

Dr Fanghua Li | Geothermal Energy | Best Researcher Award

Research Assistant, Guangxi University, China

Dr. Fanghua Li is a distinguished scholar in civil and communication engineering, currently a PhD candidate at Guangxi University, China. He has worked across a range of engineering disciplines, focusing on urban heat island effects, permeability in concrete, and advanced pavement technologies. Dr. Li has made significant contributions to research in both theoretical and applied aspects of energy efficiency, particularly in cold regions and urban planning. With multiple publications in prestigious journals and several notable projects under his belt, Dr. Li is at the forefront of innovative solutions in sustainable infrastructure. His research is particularly focused on integrating heat flux management and cooling technologies in urban environments, contributing to the development of energy-efficient materials and designs.

Profile

Scopus

Strengths for the Award

Dr. Fanghua Li demonstrates exceptional strength in applied research in civil engineering, particularly in areas related to urban heat management, energy efficiency, and sustainable infrastructure. His work on evaporation resistance characteristics in permeable concrete and its impact on the urban heat island effect, as well as his studies on the reflectivity of roadbeds in cold regions, aligns well with current global environmental and sustainability priorities. He has published multiple highly regarded articles in top-tier journals, such as Cold Regions Science and Technology, Energy and Buildings, and Solar Energy, highlighting his profound impact on his field. His research has been widely cited, with over 590 citations across 480 documents, indicating that his work is not only innovative but also highly influential in advancing understanding and practical applications. Furthermore, his involvement in managing key laboratory projects and contributing to national science foundations emphasizes his leadership and collaborative skills.

Areas for Improvements

While Dr. Li’s research contributions are impressive, expanding his focus to include more interdisciplinary studies could further enhance the depth of his work. For example, exploring the integration of his civil engineering expertise with the latest advancements in artificial intelligence (AI) or machine learning for predictive modeling of urban infrastructure would be a valuable next step. Additionally, while his work is highly technical, expanding into more policy-driven research that examines how engineering solutions can be integrated at a government or societal level could bridge the gap between academia and practical, large-scale implementation.

Another area of improvement could be the exploration of emerging materials and technologies, such as nanotechnology or bio-based construction materials, in the context of urban cooling and energy efficiency. This could keep his work at the cutting edge of sustainable engineering and ensure that his research stays relevant in a rapidly changing technological landscape.

Education

Dr. Fanghua Li’s educational journey reflects his deep commitment to the field of engineering. He is currently pursuing a PhD in Civil Engineering at Guangxi University, focusing on sustainable urban infrastructure. He earned a Master’s degree in Communication Engineering from Hunan University (2012) and a Bachelor’s degree in Communication Engineering from Xi’an University of Technology (2009). His academic foundation spans both civil and communication engineering, allowing him to bridge the gap between infrastructure design and advanced communication systems. Dr. Li has participated in various research initiatives that blend his knowledge of engineering and technology, resulting in meaningful contributions to environmental and energy-efficient engineering solutions.

Experience

Dr. Fanghua Li’s professional experience spans over a decade, with significant roles in both academia and industry. From 2012 to 2013, he worked at the Huizhou Branch of China Mobile in network maintenance, where he honed his technical expertise in communication systems. From 2013 to 2020, he managed key laboratory operations at Guangxi University, gaining in-depth experience in research management and laboratory supervision. His role involved overseeing scientific projects focused on energy efficiency, urban heat management, and sustainable construction materials. His work continues to shape his academic and research output, with a focus on integrating innovative solutions in civil engineering and communication technologies to address pressing environmental challenges.

Awards and Honors

Dr. Fanghua Li has received numerous accolades for his outstanding contributions to research in civil and communication engineering. Among his most notable achievements are his successful completion of NSFC (National Natural Science Foundation of China) Youth Projects and his research on permeability in concrete and urban heat island mitigation. His work has earned recognition from multiple academic and industry bodies. Dr. Li has consistently ranked highly in collaborative research projects, including those related to reflectivity and cooling technologies in cold regions. His scholarly contributions have garnered him a strong citation record, with his work influencing both academia and industry in sustainable infrastructure design.

Research Focus

Dr. Fanghua Liโ€™s research focuses on sustainable engineering solutions for urban environments, with particular emphasis on managing heat flux, permeability in materials, and improving energy efficiency. His work examines the urban heat island effect, the cooling performance of reflective surfaces, and the behavior of pavements and roadbeds in cold regions. He is also interested in advancing urban infrastructure materials, specifically in reducing the impact of extreme temperatures on urban areas. Additionally, Dr. Li explores the integration of nanomaterials in energy storage systems, paving the way for more sustainable building and construction practices. His research seeks to address both environmental and technical challenges by combining theoretical studies with practical applications.

Publication Top Notes

  1. Experimental study on the cooling performance of shading boards with different emissivities at the underside ๐ŸŒž๐Ÿ“š Cold Regions Science and Technology, 2020
  2. An Innovative Simplified Approach for Conductive Heat Flux in Pavement Structures ๐Ÿ”ฅ๐Ÿ™ Energy and Buildings, 2024
  3. A side-by-side comparison of the cooling effect of building blocks with retro-reflective and diffuse-reflective walls ๐Ÿข๐ŸŒž Solar Energy, 2016
  4. A Scientometric Examination on Geothermal Energy Application Research ๐ŸŒ๐Ÿ’ก Renewable Energy, 2024
  5. Free convection simulation of hybrid nanomaterial in permeable cavity with inclusion of magnetic force โš™๏ธ๐Ÿ”ฌ Journal of Molecular Liquids, 2021
  6. Influences of imposed magnetic force on treatment of hybrid nanofluid involving non-Darcy porous model ๐Ÿ”ฌ๐ŸŒก International Communications in Heat and Mass Transfer, 2021
  7. Melting process of nanoparticle enhanced PCM through storage cylinder incorporating fins โ„๏ธ๐Ÿ”‹ Powder Technology, 2021
  8. Performance of ventilation system involving thermal storage unit considering porous media ๐ŸŒฌ๏ธ๐Ÿ’จ Journal of Energy Storage, 2020
  9. Finned unit solidification with use of nanoparticles improved PCM ๐Ÿ’ก๐Ÿ”ฌ Journal of Molecular Liquids, 2020
  10. Numerical study for nanofluid behavior inside a storage finned enclosure involving melting process ๐Ÿ”งโ„๏ธ Journal of Molecular Liquids, 2020
  11. Moist curing increases the solar reflectance of concrete ๐ŸŒž๐Ÿ—๏ธ Construction and Building Materials, 2019
  12. The amplitude and maximum of daily pavement surface temperature increase linearly with solar absorption ๐ŸŒž๐ŸŒ Road Materials and Pavement Design, 2017

Conclusion

Dr. Fanghua Li is highly deserving of the Best Researcher Award. His robust academic background, leadership in managing complex research projects, and his pioneering contributions to urban cooling technologies and sustainable infrastructure design make him a strong candidate for this recognition. His ability to contribute to both theoretical and applied aspects of engineering, combined with a growing citation profile, shows his continued influence in the field. Moving forward, expanding his research to include interdisciplinary methodologies and emerging technologies would only further solidify his place as a leader in the global engineering research community.

Overall, Dr. Li exemplifies the qualities of an outstanding researcherโ€”innovation, impact, and leadershipโ€”and would be an excellent choice for the Best Researcher Award.

Thuy-Duong Thi Pham | energy | Best Researcher Award

Mrs Thuy-Duong Thi Pham | energy | Best Researcher Award

Ph.D, National Kaohsiung University Science and Technology, Taiwanย 

๐Ÿ‘ฉโ€๐Ÿ’ผ Pham Thi Thuy Duong is an accomplished International Sales Engineer with a background in industrial engineering and management. She has over three years of experience in scientific research at National Kaohsiung University of Science and Technology (NKUST), Taiwan, and has worked for various international companies. With her extensive knowledge and experience in sales, customer relations, and production processes, she aims to bring long-term value to her organization.

Profile

Scopus

Education

๐ŸŽ“ Masterโ€™s Degree (2020-2022): Pham Thi Thuy Duong completed her Masterโ€™s degree in Industrial Engineering and Management from the National Kaohsiung University of Science and Technology (NKUST).
๐ŸŽ“ Ph.D. Degree (2022 – Present): She is currently pursuing a Ph.D. in Industrial Engineering and Management at the same institution, focusing on optimizing industrial processes and decision-making.

Experience

๐Ÿ’ผ International Sales Engineer (2021-2022): At SUMEEKO Company, Taiwan, she designed approval processes, created product quotes, and supported customers. She also sourced new clients in both Vietnamese and international markets.
๐Ÿ’ผ Assistant (2019-2020): Worked at Thu Duc College of Technology preparing lesson plans and participating in teaching metal technology.
๐Ÿ’ผ Process Engineer (2018-2019): At BOSCH, Vietnam, she contributed to factory development projects, managed device purchases using SAP, and provided support to solve factory-related engineering problems.

Research Interests

๐Ÿ”ฌ Her research focuses on spherical fuzzy decision-making models, logistics technology, and sustainable manufacturing. She applies advanced industrial engineering techniques to enhance production quality, logistics operations, and emergency energy security planning.

Awards and Recognition

๐Ÿ† While no specific awards are listed, Pham Thi Thuy Duong has gained recognition through her contributions to international conferences and her work published in high-impact journals, demonstrating her excellence in the field of industrial engineering.

Publications Top Notes

๐Ÿ“„ 2023: “A Composited Regret-Theory-Based Spherical Fuzzy Prioritization Approach for Moving High-Tech Manufacturing in Southeast Asia,” published in Applied Sciences (Switzerland), Vol. 13, No. 2, 2023.
๐Ÿ“„ 2022: “A Composited Spherical Fuzzy Distance Based Multiple Criteria Decision-Making Approach for Logistics Operation Technology Evaluation,” presented at the International Conference on Logistics and Industrial Engineering (2022).
๐Ÿ“„ 2022: “Smart Technology Prioritization for Sustainable Manufacturing in Emergency Situation,” published in Processes, Vol. 10, No. 12, 2022.
๐Ÿ“„ 2022: “Direct-Use Geothermal Energy Location Multi-Criteria Planning for On-Site Energy Security in Emergencies,” published in Sustainability (Switzerland), Vol. 14, No. 22, 2022.
๐Ÿ“„ 2021: “Improving Capacity and Production Quality of The Footwear Industry: A Case Study of Binh Tien Company Limited, Vietnam,” presented at the 13th International Seminar on Industrial Engineering and Management (2021), DOI: 10.1063/5.0104996.

Conclusion

Pham Thi Thuy Duong is a strong candidate for the Best Researcher Award due to her solid academic background, innovative research contributions, and interdisciplinary impact. Her ability to combine academic theory with practical engineering experience makes her a unique and valuable researcher. With further emphasis on research output and increased visibility in the international research community, she could become a more prominent figure in her field.