Nonstationarity of the Efficiency Coefficient and Heating Temperatures of Water in Flat-Plate Solar Collectors

Author:

Klychev Sh. I.,Bakhramov S. A.,Harchenko V. V.

Publisher

Allerton Press

Subject

Renewable Energy, Sustainability and the Environment

Reference10 articles.

1. Klychev, Sh.I., Modeling of receiving-concentrating devices of solar thermal power plants, Extended Abstract of Doctoral (Tech. Sci.) Dissertation, 2004, p. 40.

2. Avezova, N.R., Modeling of processes of thermal transformation of solar energy in flat reservoirs and optimization of their basic parameters for use in systems of hot water supply, Extended Abstract of Doctoral (Tech. Sci.) Dissertation, 2018, p. 63.

3. Rodrhguez-Hidalgo, M.C., Aumente, P.A., Lecuona, A., et al., Flat plate thermal solar collector efficiency: transient behavior under working conditions, Part I: Model description and experimental validation, Appl. Therm. Eng., 2011. doi 10.1016/j.applthermaleng. 2011.04.003

4. Frid, S.E., Investigation of the efficiency of solar collectors and water heating plants and development of the methodological foundations of their thermal tests, Cand. Sci. (Tech. Sci.) Dissertation, 2002, p. 152.

5. Batmunkh, S. and Avezov, R.R., Method for calculating low-temperature solar heaters taking into account the daily nonstationarity of the thermal processes flowing in them, Geliotekhnika, 1981, no. 4, pp. 53–58.

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