Jinbo Feng | Environmental and Sustainable Materials | Best Researcher Award

Mr. Jinbo Feng | Environmental and Sustainable Materials | Best Researcher Award

Shenzhen University | China

Mr. Jinbo Feng is a researcher in architecture at Shenzhen University, China, whose work focuses on sustainable building design, environmental comfort, and material innovation. His research integrates architectural theory with environmental technology, emphasizing thermal comfort optimization, self-insulating concrete development, solid waste recycling, and bionic design for marine ecological restoration. He has co-authored peer-reviewed studies, including the SCI Q2 article “Climate-Responsive Design for Sustainable Housing: Thermal Comfort, Spatial Configuration, and Environmental Satisfaction in Subtropical Void Decks” published in Buildings, and presented at the 16th International Conference on Environment-Behavior Studies (CEB-ASC) on residents’ perception of settlement spaces. His ongoing projects involve the thermal comfort study of overhead spaces in subtropical residential buildings, finite element modeling of thermal and mechanical behavior in insulating blocks, and bionic polymer reef design under the Shenzhen–Hong Kong Joint Funding Programme. Recognized with the Shenzhen University Special Award Scholarship and other academic honors, Feng demonstrates a strong commitment to advancing low-carbon, resource-efficient architectural solutions. His work contributes to bridging the gap between design aesthetics, engineering functionality, and environmental sustainability, promoting innovative strategies for climate-responsive architecture in rapidly urbanizing subtropical regions.

Profile: ORCID

Featured Publications

  • Feng, J., & [Mentor’s Name]. (2024). Climate-responsive design for sustainable housing: Thermal comfort, spatial configuration, and environmental satisfaction in subtropical void decks. Buildings. (SCI Q2).

  • Feng, J., & [Mentor’s Name]. (2024). A study of the correlation between the form of public space in settlements and the evaluation of residents’ perceptions. In Proceedings of the 16th International Conference on Environment-Behavior Studies (CEB-ASC), Nanjing University, China.

Vahid Isazade | Environmental and Sustainable Materials | Best Paper Award

Dr. Vahid Isazade | Environmental and Sustainable Materials | Best Paper Award

University of Tehran | Iran

Dr. Vahid Isazade is an accomplished scholar in the fields of hydrology, meteorology, and geospatial sciences, widely recognized for his innovative contributions to remote sensing and GIS applications. With a strong academic foundation and a passion for solving real-world environmental challenges, he has developed impactful research that addresses critical issues such as water resource management, natural hazards, and sustainable urban planning. His scientific achievements, combined with his active role as a reviewer for international journals, highlight his dedication to advancing research and contributing to global knowledge exchange.

Professional Profile

Scopus

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ORCID

Education

He began his academic journey in hydrology and meteorology, achieving distinction as a top student at a leading national university. His outstanding performance and recognition as a brilliant talent enabled him to pursue graduate studies in remote sensing and GIS at a premier institution. His dissertation work explored the integration of spatial models, regression approaches, and machine learning for analyzing environmental and health-related phenomena, exemplifying his ability to combine theoretical and applied perspectives in research. His educational pathway has been marked by consistent excellence, innovation, and leadership in advancing the use of geospatial technologies.

Experience

Dr. Vahid Isazade has cultivated rich academic and professional experience through collaborative research projects, journal refereeing, and contributions to book translations on advanced topics in urban planning and environmental management. He has participated in high-impact projects supported by national and international organizations, focusing on sustainable development, disaster resilience, and innovative spatial data applications. His role as a referee for several respected journals demonstrates the trust placed in his expertise by the global academic community. Additionally, his experience as a lecturer and trainer has allowed him to guide graduate students and practitioners in applying GIS and remote sensing tools to practical challenges.

Research Interest

His research interests span a wide spectrum of contemporary environmental and geospatial sciences. He focuses on climate change monitoring, spatial data modeling, and environmental hazard assessment using advanced machine learning techniques. His work also explores the integration of remote sensing data with urban planning and public health applications, reflecting an interdisciplinary approach that bridges science, technology, and policy. By leveraging emerging technologies such as cloud computing platforms, spatial regression models, and GeoAI, he aims to create scalable solutions for global challenges in sustainability, disaster risk management, and environmental justice.

Awards

Throughout his academic and professional career, Dr. Vahid Isazade has been recognized with numerous prestigious awards and honors that reflect both his scholarly excellence and innovative ideas. He has been distinguished as a brilliant talent by elite academic foundations, awarded medals in national Olympiads, and honored as the best researcher in several renowned scientific festivals. His innovative contributions, including the development of novel approaches for water purification and advanced spatial data services, have also been celebrated at national scientific gatherings. These achievements reflect not only his technical expertise but also his ability to generate transformative ideas with practical and societal impact.

Publication

Dr. Vahid Isazade has an extensive record of publications in high-ranking international journals, contributing significantly to the advancement of environmental modeling, disaster risk assessment, and renewable energy planning. His influential papers include:

Title : Integration of Moran’s I, geographically weighted regression (GWR), and ordinary least square (OLS) models in spatiotemporal modeling of COVID-19 outbreak in Qom and Mazandaran
Journal: Modeling Earth Systems and Environment
Published on: 2023
Citation: 42

Title : Flood susceptibility prediction using MaxEnt and frequency ratio modeling for Kokcha River in Afghanistan
Journal: Natural Hazards
Published on: 2024
Citation: 27

Title : Landslide susceptibility mapping in Badakhshan province, Afghanistan: a comparative study of machine learning algorithms
Journal: Geocarto International
Published on: 2023
Citation: 23

Title : Advancement in navigation technologies and their potential for the visually impaired: a comprehensive review
Journal: Spatial Information Research
Published on: 2023
Citation: 22

Title : Spatiotemporal and multi-sensor analysis of surface temperature, NDVI, and precipitation using Google Earth Engine cloud computing platform
Journal: Russian Journal of Earth Sciences
Published on: 2022
Citation: 18

Title : Investigation of the effects of salt dust caused by drying of Urmia Lake on the sustainability of urban environments
Journal: Journal of Clean WAS
Published on: 2021
Citation: 16

Title : Spatio-temporal analysis of the COVID-19 pandemic in Iran
Journal: Spatial Information Research
Published on: 2023
Citation: 11

Conclusion

Dr. Vahid Isazade represents the new generation of researchers who combine academic rigor with practical innovation. His outstanding academic achievements, impactful publications, and commitment to applying geospatial technologies to real-world challenges make him an exemplary candidate for the Best Paper Award. His interdisciplinary approach, which integrates hydrology, meteorology, GIS, remote sensing, and data science, reflects a vision for research that is both globally relevant and locally impactful. His contributions embody excellence, creativity, and a deep commitment to advancing sustainable solutions for the future.