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- W2169189912 abstract "Using porous materials has become an effective means to enhance heat transfer. Volumetric receiver is a key component inside the solar thermal systems. The novel concept using double-layer ceramic foam holds great potential for improving the efficiency. The current study aims to investigate the effects of geometric properties of each porous layer on the thermal performance. The local thermal non-equilibrium model is adopted for energy equations of the fluid and solid phases. Radiative transfer in the foam combined the concentrated solar radiation absorption is solved with the modified P1 approximation. The results indicate that the thickness of the first porous layer has significant effect on the temperature field and pressure drop. Compared with the increasing-porosity configuration, the decreasing-porosity configuration tends to achieve higher air outlet temperature and lower solid inlet temperature. In addition, the increasing design of mean cell size shows improved performance compared to the decreasing design." @default.
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- W2169189912 date "2015-06-01" @default.
- W2169189912 modified "2023-10-10" @default.
- W2169189912 title "Thermal performance analysis on a volumetric solar receiver with double-layer ceramic foam" @default.
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- W2169189912 doi "https://doi.org/10.1016/j.enconman.2015.03.066" @default.
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