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[5] Arranovich E., The joint solar collector testing programme of the European Community

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Bibliografia

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BIBLIOGRAFIA

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[1] UNI EN 12975-1, Thermal solar systems and components - Solar collectors - Part 1: General requirements, 2002.

[2] UNI EN 12975-2, Thermal solar systems and components - Solar collectors - Part 2: Test methods, 2005.

[3] ISO 9806-1, Test methods for solar collectors. Part 1: Thermal performance of glazed liquid heating collectors including pressure drop, 1994.

[4] ASHRAE 93-2003, Methods for testing to determine the thermal performance of solar collectors, 2003.

[5] Arranovich E., The joint solar collector testing programme of the European Community. In Proceedings of UK / ISES Conference C11, Testing of solar collectors and systems, 1977.

[6] Rogers B. A., A method of collector testing under transient conditions, In Proceedings ISES Solar World Forum, August, Brighton, UK, Vol. 1, Hall D. O.

and Morton J. (Eds.), pp. 898-902, Pergamon Press, New York, 1981.

[7] Emery M., Rogers B. A., On a solar collector thermal performance test method for use in variable conditions, Solar Energy 33, 117-123, 1984.

[8] Saunier G. Y. and Chungpaibulpatana S., A new inexpensive dynamic method of testing to determine solar thermal performance, Proc. ISES Solar World Congress, Australia, Vol. 2, Szokolay S. V. (Ed.), pp. 910-916, Pergamon Press, New York, 1983.

[9] Wang X. A., Xu Y. F. and Meng X. Y., A filter method for transient testing of collector performance, Solar Energy 38, 125-134, 1987-

[10] Chungpaibulpatana S. and Exell R. H. B., The effect of using a one node heat capacitance model for determining solar collector performance parameters by transient test methods, Solar and Wind Technology 5, 411-421, 1988.

[11] Perers B., Dynamic method for solar collector array testing and evaluation with standard database and simulation programs, Solar Energy 50, 517-526, 1993.

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Bibliografia

176

[12] Perers B., An improved dynamic solar collector test method for determination of non-linear optical and thermal characteristics with multiple regression, Solar Energy 59, 163-178, 1997.

[13] Muschaweck J. and Spirkl W., Dynamic solar collector performance testing, Solar Energy Materials and Solar Cells 30, 95-105, 1993.

[14] Wijeysundera N. E., Hawlauder M. N. A. and Foong K.Y., Estimation of collector performance parameters from daily system test, Trans. ASME: J. Solar Energy Eng. 118, 30-36, 1996.

[15] Amer E. H., Nayak J. K. and Sharma G. K., A transient method for testing of flat- plate solar collectors, Energy Conversion and Management 40, 1-9, 1998.

[16] Amer E. H., Nayak J. K. and Sharma G. K., A new dynamic method for testing solar flat-plate collectors under variable weather, Energy Conversion and Management 40, 803-823, 1999.

[17] Amer E. H., Nayak J. K., Jadeja P. and Sharma G. K., Comparison of two dynamic test methods for solar-plate collectors, Energy Conversion and Management 39, 285-293, 1998.

[18] Amer E. H., Nayak J. K., Experimental and theoretical evaluation of dynamic test procedures for solar flat-plate collectors, Solar Energy 69, 337-401, 2000.

[19] Fischer S. et al., Collector test method under quasi-dynamic conditions according to the European Standard EN 12975-2, Solar Energy 76, 117-123, 2004.

[20] Cucumo M. A., Marinelli V., Oliveti G., Ingegneria Solare - Principi ed applicazioni, Ed. Pitagora, Bologna (1994).

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