APA 6th Edition Kolaković, I. i Dović, D. (2009). Simulation of the solar domestic hot water system operation. Tehnički vjesnik, 16 (1), 3-9. Preuzeto s https://hrcak.srce.hr/34943
MLA 8th Edition Kolaković, Igor i Damir Dović. "Simulation of the solar domestic hot water system operation." Tehnički vjesnik, vol. 16, br. 1, 2009, str. 3-9. https://hrcak.srce.hr/34943. Citirano 27.02.2021.
Chicago 17th Edition Kolaković, Igor i Damir Dović. "Simulation of the solar domestic hot water system operation." Tehnički vjesnik 16, br. 1 (2009): 3-9. https://hrcak.srce.hr/34943
Harvard Kolaković, I., i Dović, D. (2009). 'Simulation of the solar domestic hot water system operation', Tehnički vjesnik, 16(1), str. 3-9. Preuzeto s: https://hrcak.srce.hr/34943 (Datum pristupa: 27.02.2021.)
Vancouver Kolaković I, Dović D. Simulation of the solar domestic hot water system operation. Tehnički vjesnik [Internet]. 2009 [pristupljeno 27.02.2021.];16(1):3-9. Dostupno na: https://hrcak.srce.hr/34943
IEEE I. Kolaković i D. Dović, "Simulation of the solar domestic hot water system operation", Tehnički vjesnik, vol.16, br. 1, str. 3-9, 2009. [Online]. Dostupno na: https://hrcak.srce.hr/34943. [Citirano: 27.02.2021.]
Sažetak This paper presents the optimized solution of a solar system for providing domestic hot water through the results of a system work simulation done on an hourly basis for a motel with capacity of 35 persons located in climate areas of Zagreb and Split. The analyzed system consists of two tanks for domestic hot water, capacity 1600 liters each, and appropriate collector area (43,7 m² for Zagreb and 30,4 m² for Split). The basic criterion for optimization was the shortest investment payback period with a primary goal to cover the energy demands for domestic hot water in July and August. This paper presents monthly and yearly results of performed simulation for both climate areas and description of the calculation procedure for estimating solar radiation and energy gain.