Thermal performance simulation of a solar cavity receiver under windy conditions

Author:

Fang J.B.,Wei J.J.,Dong X.W.,Wang Y.S.

Funder

National High-Technology Research and Development Program of China

National Fundamental Research and Development Program of China

Publisher

Elsevier BV

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

Reference24 articles.

1. Baker, A.F., Faas, S.E., Radosevich, L.G., Skinrood, A.C., 1989. US–Spain Evaluation of the Solar One and CESA-1 Receiver and Storage Systems. Sandia National Laboratories.

2. Interaction of surface radiation with free-convection in a square cavity;Balaji;International Journal of Heat and Fluid Flow,1993

3. Combined radiation and natural-convection in a rectangular cavity with a transparent wall and containing a non-participating fluid;Behnia;International Journal for Numerical Methods in Fluids,1990

4. Bowring, W.R., 1962. Physical Model of Bubble Detachment and Void Volume in Subcooled Boiling. OECD Halden Reactor Project Report No. HPR-10.

5. An analysis of convective losses from cavity solar central receiver;Clausing;Solar Energy,1981

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