Jacqueline Saliba | Civil Engineering | Best Researcher Award

Mrs. Jacqueline Saliba | Civil Engineering | Best Researcher Award

American University of the Middle East | Kuwait

Mrs. Jacqueline Saliba is a distinguished researcher in structural health monitoring and advanced engineering systems, holding a PhD in mechanical/civil engineering, she has extensive experience in academia and international collaborative research. Her expertise includes non-destructive evaluation, acoustic emission, structural integrity, nuclear containment systems, and sustainable material valorization. She has led and contributed to major projects such as ANR ENDE, CEA–CESTA CASCADE, and VALOSED. Recognized with multiple awards, her work advances engineering innovation, infrastructure safety, and sustainable industrial applications.

Citation Metrics (Scopus)

8000
1000
600
200
0

Citations
1225

Document
46
h-index
16

Citations

Documents

h-index


View Scopus Profile

Featured Publications

Geopolymerization of Untreated Dredged Sediments for Sustainable Binder Development
Materials, 2026. Lisa Monteiro, Humberto Yáñez-Godoy, Nadia Saiyouri, Jacqueline Saliba

Effects of Rubber Particle Size and Substitution Rate on the Behavior of Eco-Friendly Rubberized Concrete
Engineering, Technology & Applied Science Research, 2025. Najeeb AlMousawi et al., Jacqueline Saliba

Comparison of Field and Laboratory Tests for Soil Suitability Assessment in Raw Earth Construction
Applied Sciences, 2025. Jacqueline Saliba, Walid Al-Shaar, Madeline Delage

Effect of Wetting/Drying Cycles on the Durability of Flax Fibers Reinforced Earth Concrete
Construction and Building Materials, 2024. Saliba J., Kouta N., Saiyouri N.

Life Cycle Analysis of Sediment Valorization by Means of Geopolymerization from Laboratory to Industrial Scale
Construction and Building Materials, 2024. Monteiro L., Feraille A., Saliba J., Yáñez-Godoy H., Saiyouri N.

Adriana Mariana Borș | Chemistry and Materials Science | Chemical Engineering Award

Assoc. Prof. Dr. Adriana Mariana Borș | Chemistry and Materials Science | Chemical Engineering Award

National Institute for R&D for Optoelectronics-subsidiary | Romania

Adriana Mariana Bors is a well-established researcher in the field of materials science and polymer engineering, recognized for her significant contributions to advanced functional materials and composite technologies. With a strong academic foundation in materials engineering and optoelectronics, she has developed extensive expertise through her affiliation with the National Institute of Research and Development for Optoelectronics. Her professional experience spans interdisciplinary research involving polymeric composites, nanomaterials, and environmentally sustainable engineering solutions. She has authored 67 scientific documents, achieving an h-index of 15 and accumulating 654 citations, reflecting the impact and consistency of her scholarly work. Her research interests focus on polymer-based composites, electromagnetic shielding materials, water purification technologies, anticorrosive coatings, and advanced electrotechnical applications. She has contributed to innovative developments such as epoxy resin composites with boron nitride and functionalized polymeric films for environmental and industrial applications. Throughout her career, she has been involved in collaborative projects and has gained recognition within the scientific community for her impactful research outputs. In conclusion, Adriana Mariana Bors continues to play a vital role in advancing materials science through innovative research, contributing to sustainable technologies and modern engineering applications.

Citation Metrics (Scopus)

8000
4000
600
200
0

Citations
654

Document
67
h-index
15

Citations

Documents

h-index


View Scopus Profile

Featured Publications

Yuxin Zhang | Energy and Sustainability | Best Researcher Award

Mr. Yuxin Zhang | Energy and Sustainability | Best Researcher Award

Tongji University | China

Mr. Yuxin Zhang is a postgraduate student at Tongji University, specializing in Energy and Power with a focus on refrigeration and high-temperature heat pump systems. His academic journey is centered on advancing sustainable thermal energy technologies, particularly in the context of rail vehicle air-conditioning. Zhang has contributed significantly to the replacement of traditional refrigerants with low-GWP refrigerant mixtures, addressing both environmental and energy efficiency challenges. His research has been published in Energies, a leading SCI-indexed journal, with over 1 citations, an h-index of 1, and multiple supporting documents available through his publication record. Building on this foundation, he has applied for two invention patents related to energy-efficient refrigeration and heating systems. His collaborations with the Shanghai Refrigeration Society and industry-based projects highlight his applied research experience and commitment to bridging academic innovation with industrial implementation. Zhang’s interests span refrigeration cycles, high-temperature heat pump technologies, and sustainable cooling solutions, reflecting his dedication to green energy transitions. Recognized for his early yet impactful contributions, he has actively participated in research addressing climate-friendly alternatives in thermal management. With a growing publication profile and strong research outputs, he aspires to advance innovation in refrigeration engineering and contribute meaningfully to global sustainability goals.

Profiles : Scopus | Google Scholar 

Featured Publications

Zhang, Y., Cao, S., Zhao, L., & Cao, J. (2022). A case application of WRF-UCM models to the simulation of urban wind speed profiles in a typhoon. Journal of Wind Engineering and Industrial Aerodynamics, 220, 104874.

Liu, C., Zhang, Y., Yao, Y., & Huang, Y. (2019). Calculation method for flexural capacity of high strain-hardening ultra-high performance concrete T-beams. Structural Concrete, 20(1), 405–419.

Zhang, Y., Cao, S., & Cao, J. (2022). An improved consistent inflow turbulence generator for LES evaluation of wind effects on buildings. Building and Environment, 223, 109459.

Zhang, Y., Cao, S., Cao, J., & Wang, J. (2023). Effects of turbulence intensity and integral length scale on the surface pressure on a rectangular 5:1 cylinder. Journal of Wind Engineering and Industrial Aerodynamics, 236, 105406.

Zhang, Y., Cao, S., & Cao, J. (2023). Implementation of an embedded LES model with parameter assessment for predicting surface pressure and surrounding flow of an isolated building. Journal of Wind Engineering and Industrial Aerodynamics. Advance online publication.