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윤성민,백인수,한영태,남효갑,Youn, Sung-Min,Paek, In-Su,Han, Young-Tae,Nam, Hyo-Gab 한국교육시설학회 2011 敎育施設 Vol.18 No.3
Performance of a small-capacity solar absorption cooling system was investigated experimentally. Ten sets of evacuative-tube solar-heat collectors and a 5 kW single-stage absorption cooler were combined to produce a hybrid cooling system. The performance of the cooling system was measured using a tim-coil unit installed in a small plastic storage. It was found from the test on a sunny day of May that when the temperature of the hot water supplied from the solar collectors to the generator of the absorption cooler reached $60^{\circ}C$, the absorption cooler started cooling and the cold water temperature measured from the fan-coil unit reached $18^{\circ}C$. The COP, which is defined as the ratio of the cooling power to the total electrical power input was higher than 1.0.
윤성민(Youn, Sung-Min),백인수(Paek, In-Su),한영태(Han, Young-Tae),남효갑(Nam, Hyo-Gab) 한국교육시설학회 2011 敎育施設 Vol.18 No.3
Performance of a small-capacity solar absorption cooling system was investigated experimentally. Ten sets of evacuative-tube solar-heat collectors and a 5 kW single-stage absorption cooler were combined to produce a hybrid cooling system. The performance of the cooling system was measured using a tim-coil unit installed in a small plastic storage. It was found from the test on a sunny day of May that when the temperature of the hot water supplied from the solar collectors to the generator of the absorption cooler reached , the absorption cooler started cooling and the cold water temperature measured from the fan-coil unit reached . The COP, which is defined as the ratio of the cooling power to the total electrical power input was higher than 1.0.