
doi: 10.1063/1.4949066
Convective losses reduce the efficiency of cavity receivers used in solar power towers especially under windy conditions. Therefore, measures should be taken to reduce these losses. In this paper two different measures are analyzed: an air curtain and a partial window which covers one third of the aperture opening. The cavity without modifications and the usage of a partial window were analyzed in a cryogenic wind tunnel at −173°C. The cryogenic environment allows transforming the results from the small model cavity to a large scale receiver with Gr≈3.9·1010. The cavity with the two modifications in the wind tunnel environment was analyzed with a CFD model as well. By comparing the numerical and experimental results the model was validated. Both modifications are capable of reducing the convection losses. In the best case a reduction of about 50 % was achieved.
Solar Thermal Power, reduction strategies, Cavity receiver, convection
Solar Thermal Power, reduction strategies, Cavity receiver, convection
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