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A two-phase closed thermosyphon operated with nanofluids for solar energy collectors: Thermodynamic modeling and entropy generation analysis Wang WW, Cai Y, Wang L, Liu CW, Zhao FY, Sheremet MA, Liu D Solar Energy, 211, 192, 2020 |
2 |
Circulating fluidized bed heat recovery/storage and its potential to use coated phase-change-material (PCM) particles Pitie F, Zhao CY, Baeyens J, Degreve J, Zhang HL Applied Energy, 109, 505, 2013 |
3 |
Mathematical Modeling of Thermal Radiation Effects on Transient Gravity-Driven Optically Thick Gray Convection Flow along an Inclined Plane with Pressure Gradient Beg OA, Ghosh SK, Narahari M, Beg TA Chemical Engineering Communications, 198(12), 1630, 2011 |
4 |
Solar sorption refrigerator using a CPC collector Tamainot-Telto Z, Critoph RE Renewable Energy, 16(1), 735, 1999 |
5 |
Modelling line-axis solar concentrators in the medium temperature range. Eames PC, Norton B, Tripagnostopoulos Y, Yianoulis P Renewable Energy, 16(1), 743, 1999 |
6 |
Simulation model of a CPC collector with temperature-dependent heat loss coefficient Fraidenraich N, De Lima RD, Barbosa EMD Solar Energy, 65(2), 99, 1999 |
7 |
Experimental investigation of heat losses from low-concentrating non-imaging concentrators Ronnelid M, Karlsson B Solar Energy, 57(2), 93, 1996 |
8 |
THE EFFECT OF VARIATION OF ANGLE OF INCLINATION ON THE PERFORMANCE OF LOW-CONCENTRATION-RATIO COMPOUND PARABOLIC CONCENTRATING SOLAR COLLECTORS KOTHDIWALA AF, NORTON B, EAMES PC Solar Energy, 55(4), 301, 1995 |