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A GIS-MOPSO integrated method for optimal design of grid-connected HRES for educational buildings (2020)
Book Chapter
Mokhtar, C., Negrou, B., Settou, N., Bouferrouk, A., Yao, Y., & Messaoudi, D. A GIS-MOPSO integrated method for optimal design of grid-connected HRES for educational buildings. In Springer Proceedings in Energy (371-378). Springer. https://doi.org/10.1007/978-981-15-6595-3_48

In this paper, an optimal design of a grid-connected PV-battery-hydrogen hybrid renewable energy system (HRES) at a University campus in Ouargla, Algeria is carried out. To achieve this goal, geographical information system (GIS), CAD software and mu... Read More about A GIS-MOPSO integrated method for optimal design of grid-connected HRES for educational buildings.

Proton modified Pt zeolite fuel cell electrocatalysts (2015)
Book Chapter
Yao, J., Yao, Y., & Mirzaii, H. (2015). Proton modified Pt zeolite fuel cell electrocatalysts. In A. Sayigh (Ed.), Renewable Energy in the Service of Mankind Vol I (173-182). Springer. https://doi.org/10.1007/978-3-319-17777-9_16

© Springer International Publishing Switzerland 2015. NaY zeolite has been selected as a suitable material to host 1.5 wt.% platinum (Pt) loading on zeolite using ion-exchange methods of Pt(NH3)4(NO3)2 without excess NH4NO3 nitrate and Pt(NH3)4(NO3)2... Read More about Proton modified Pt zeolite fuel cell electrocatalysts.

Flow topology of symmetric crossing shock wave boundary layer interactions (2012)
Book Chapter
Salin, A., Yao, Y., Lo, S. H., & Zheltovodov, A. A. (2012). Flow topology of symmetric crossing shock wave boundary layer interactions. In K. Kontis (Ed.), 28th International Symposium on Shock Waves (425-431). UK: Springer. https://doi.org/10.1007/978-3-642-25685-1_64

Three-dimensional crossing-shock-wave and turbulent boundary-layer interactions can generate intense wall heat flux rates, high pressure levels, and large-scale flow separations on high-speed vehicle surfaces. To reproduce such complex flow physics,... Read More about Flow topology of symmetric crossing shock wave boundary layer interactions.