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³í¹®¸í ž翭°ú Áö¿­À» ÀÌ¿ëÇÑ ³­¹æ¿ë °ø±â¼øȯ½Ã½ºÅÛ ±âÃÊ¿¬±¸ / A Basic Study on the Air Circulation System for Heating using Solar and Geothermal Heat - Focused on Trombe Wall Thermal Storage Performance using Solar Heat - / ž翭À» ÀÌ¿ëÇÑ Æ®·Ò¿ù½ÄÀÇ Ãà¿­¼º´É Áß½ÉÀ¸·Î
ÀúÀÚ¸í ±èº´À±(Kim, Byung-Yun) ; ÃÖ¿ë¼®(Choi, Yong-Seok)½Äº°ÀúÀÚ
¹ßÇà»ç Çѱ¹³óÃÌ°ÇÃàÇÐȸ
¼ö·Ï»çÇ× Çѱ¹³óÃÌ°ÇÃàÇÐȸ ³í¹®Áý, Vol.19 No.4 (2017-11)
ÆäÀÌÁö ½ÃÀÛÆäÀÌÁö(49) ÃÑÆäÀÌÁö(8)
ISSN 1229-2532
ÁÖÁ¦ºÐ·ù µµ½Ã / °èȹ¹×¼³°è
ÁÖÁ¦¾î ž翭 ; Áö¿­ ; Æ®·Ò¿ù ; Ãà¿­ ; °ø±â³­¹æ ; Solar Heat ; Geothermal Heat ; Trombe Wall ; Heat Storage ; Air Heating
¿ä¾à2 Each country in the world currently concentrates on shifting into clean energy, which can be alternative energy, for global environment protection and solution to the problem of fossil fuel depletion. The Korean government is predicted to develop renewable energy, such as solar power, ground power, and offshore wind power, and to increase their supply ratios by ending the use of coals and nuclear power plants. This study conducted experiments on thermal storage performance of Trombe wall thermal storage materials using solar power and simulations in order to offer baseline data for the development of a hybrid air circulation system for heating that can maximize efficiency by simultaneously using solar and geothermal power. The study results are as follows: (1) In all the specimens with 3m, 5m, and 7m in the length of thermal storage pipe, 5.7¡É, 7.8¡É, and 10.5¡É rose, respectively, as the thermal storage effect of the specimens attaching insulation film and black tape to the general funnel. They were most excellent in terms of thermal storage effect. (2) As a result of thermal performance evaluation on the II type specimens, ¥±-3 (7.8¡É rise) > ¥±-4 (5.3¡É rise) > ¥±-1 (3.9¡É rise) > ¥±-2 (2.3¡É rise) was revealed, and thus II-3 (insulation film + black tape) was most effective as shown in the I type. (3) This study analyzed air current and temperature distribution inside of the greenhouse by linking actually measured values and simulation interpretation results through the interpretation of CFD (computational fluid dynamics). As a result, the parts absorbing heat and discharging heat around the thermal storage pipe could be visibly classified, and temperature distribution inside of the greenhouse around the thermal storage pipe could be figured out.
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DOI http://dx.doi.org/10.14577/kirua.2017.19.4.49
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