1 |
Cavity receivers in solar dish collectors: A geometric overview Kasaeian A, Kouravand A, Rad MAV, Maniee S, Pourfayaz F Renewable Energy, 169, 53, 2021 |
2 |
Experimental investigation on heat-transfer characteristics of a cylindrical cavity receiver with pressurized air in helical pipe Zhang YP, Chen YX, Zou CZ, Xiao H, Falcoz Q, Neveu P, Zhang C, Huang XH Renewable Energy, 163, 320, 2021 |
3 |
A theoretical heat transfer analysis of different indirectly-irradiated receiver designs for high-temperature concentrating solar power applications Wang WJ, Fan LW, Laumert B Renewable Energy, 163, 1983, 2021 |
4 |
Assessing the impact of non-ideal optical factors on optimized solar dish collector system with mirror rearrangement Yan J, Peng YD, Wang H International Journal of Energy Research, 44(11), 8799, 2020 |
5 |
Research and review study of solar dish concentrators with different nanofluids and different shapes of cavity receiver: Experimental tests Loni R, Asli-Areh EA, Ghobadian B, Kasaeian AB, Gorjian S, Najafi G, Bellos E Renewable Energy, 145, 783, 2020 |
6 |
A 100 kW cavity-receiver reactor with an integrated two-step thermochemical cycle: Thermal performance under solar transients Vidal A, Gonzalez A, Denk T Renewable Energy, 153, 270, 2020 |
7 |
Experimental insights into the mechanism of heat losses from a cylindrical solar cavity receiver equipped with an air curtain Alipourtarzanagh E, Chinnici A, Nathan GJ, Dally BB Solar Energy, 201, 314, 2020 |
8 |
Optimization of Solar Tower molten salt cavity receivers for maximum yield based on annual performance assessment Schottl P, Bern G, van Rooyen D, Pretel JAF, Fluri T, Nitz P Solar Energy, 199, 278, 2020 |
9 |
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 |
10 |
Experimental correlation of natural convection losses from a scale-model solar cavity receiver with non-isothermal surface temperature distribution Abbasi-Shavazi E, Torres JF, Hughes G, Pye J Solar Energy, 198, 355, 2020 |