1 |
Thermodynamic performance of a new hybrid system based on concentrating solar system, molten carbonate fuel cell and organic Rankine cycle with CO2 capturing analysis Mei B, Qin YH, Taghavi M Process Safety and Environmental Protection, 146, 531, 2021 |
2 |
Cavity receivers in solar dish collectors: A geometric overview Kasaeian A, Kouravand A, Rad MAV, Maniee S, Pourfayaz F Renewable Energy, 169, 53, 2021 |
3 |
Performance analysis of Scheffler dish type solar thermal cooking system cooking 6000 meals per day Kanyowa T, Nyakujara GV, Ndala E, Das S Solar Energy, 218, 563, 2021 |
4 |
A comprehensive simulation on optical and thermal performance of a cylindrical cavity receiver in a parabolic dish collector system Xiao L, Guo FW, Wu SY, Chen ZL Renewable Energy, 145, 878, 2020 |
5 |
On the thermal performance of flat and cavity receivers for a parabolic dish concentrator and low/medium temperatures Lopez O, Banos A, Arenas A Solar Energy, 199, 911, 2020 |
6 |
Performance improvement of a modified cavity receiver for parabolic dish concentrator at medium and high heat concentration Bopche S, Rana K, Kumar V Solar Energy, 209, 57, 2020 |
7 |
A novel optical-thermal modeling of a parabolic dish collector with a helically baffled cylindrical cavity receiver Soltani S, Bonyadi M, Avargani VM Energy, 168, 88, 2019 |
8 |
Thermodynamic and economic analyses and optimization of a multi-generation system composed by a compressed air storage, solar dish collector, micro gas turbine, organic Rankine cycle, and desalination system Javidmehr M, Joda F, Mohammadi A Energy Conversion and Management, 168, 467, 2018 |
9 |
Experimental study of carbon nano tube/oil nanofluid in dish concentrator using a cylindrical cavity receiver: Outdoor tests Loni R, Asli-Ardeh EA, Ghobadian B, Kasaeian A Energy Conversion and Management, 165, 593, 2018 |
10 |
Techno-economic analysis of hydrogen production by solid oxide electrolyzer coupled with dish collector Mohammadi A, Mehrpooya M Energy Conversion and Management, 173, 167, 2018 |