Solar Energy Storage Effectiveness on Double Layered Single Span Plastic Greenhouse
Autor: | Su-Jang Lee, Jongpil Moon, Young-Sun Ryou, Jin-Kyung Kwon, Kyeong-Won Kim, Nam-Kyu Yun, Sung-Hyoun Lee |
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Rok vydání: | 2011 |
Předmět: |
Engineering
business.industry Mechanical Engineering Environmental engineering Greenhouse Solar energy Thermal energy storage Agricultural and Biological Sciences (miscellaneous) Fan coil unit Computer Science Applications Warm front Duct (flow) business Subsurface flow Engineering (miscellaneous) Groundwater |
Zdroj: | Journal of Biosystems Engineering. 36:217-222 |
ISSN: | 1738-1266 |
DOI: | 10.5307/jbe.2011.36.3.217 |
Popis: | This study was carried out in order to reduce the amount of underground water which is used in the double layered single span plastic greenhouse for retaining heat. For this research, two plastic green houses of the double layered single span plastic greenhouse were installed. There was equipped of internal small tunnel for keeping warm air in the interior of the house. Then the internal small tunnel for keeping warm air was fitted with PVC duct of 50 cm in diameter filled with subsurface water. The surplus solar energy in the greenhouse was stored in the water in the PVC duct. Four FCUs (Fan Coil Unit), which has the capacity of 8,000 kcal per hour, were installed in the middle of the house, and a circulation motor in heat storage water tank was operated from 10:30 a.m. to 16:00 p.m. in order to circulate water between the water tank and the FCUs. Consequently about 5 degrees celsius could be maintained in the interior of the internal small tunnel for keeping warm air with the external temperature of lower than minus 5 degrees celsius. It appeared that the alteration of an internal temperature of the house was flexible depending on the sunlight during daytime. To prevent the water freezing, mixing antifreezing liquid in the water or operating FCU continuously was needed. Also, in order to use the surplus solar thermal energy on plastic green house of water curtain system efficiently, storing the surplus heat during daytime simultaneously finding a method of using water curtain systematic underground water happened to be important. As a result of this research, when the house's interior temperature is below zero the operation of FCU appeared to be impossible. Considering the amount of water used in the house with water-curtain-heating system is 150~ 200 ton per day, using the system mentioned in this research showed that reducing the underground water more than 80% in order to maintain the internal temperature as the level of 5 degree celsius at the extreme temperature of minus 5 degrees celsius. |
Databáze: | OpenAIRE |
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