• Title/Summary/Keyword: 집열에너지

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Studies on the Focusing Solar Agricultural Crop Dryer - Part1. Heat Efficiency of Aluminum-laminated Aeryl Film Solar Heater - (농산물(農産物) 건조용(乾燥用) 곡면집광식(曲面集光式) 태양열(太陽熱) 이용(利用) 장치(裝置)에 관한 연구(硏究) - 제1보(第1報). 알루미늄-아크릴 필림을 이용(利用)한 태양열(太陽熱) 집열장치(集熱裝置)의 열이용(熱利用) 효율(?率) -)

  • Chun, Jae-Kun;Mok, Chul-Kyoon;Kim, Hyun-Uk
    • Korean Journal of Food Science and Technology
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    • v.11 no.1
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    • pp.8-12
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    • 1979
  • A cylindrical solar energy focusing collector constructed using aluminum-laminated film plastered on the acrylic plate and examined its performances under the Korean local weather conditions. The reflector surface of this collector· evidenced the reflectivity of 66.1%,which was satisfactory value that could be applicable to the solar collector for its low price and at·availability. Collector efficiency measured at the heat exchanger fluid in absorber-copper pipe black colored was 73% and the resulting natural convection of the heat transfer media (water) was recorded up to 2.82 cm/sec. The overall efficiency of the solar heater in operation was 28.6% and it was correlated with the solar energy input and the temperature elevation difference gained.

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An Experimental Study on the Utilization of Heat Pipes for Solar Water Heaters (히이트파이프를 이용한 태양열 온수급탕 시스템에 관한 기초 실험 연구)

  • Chun, Won-Gee;Kang, Yong-Heack;Jeon, Myung-Seok;Kwak, Hee-Youl
    • Solar Energy
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    • v.15 no.2
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    • pp.3-11
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    • 1995
  • This paper reports the performance of solar domestic hot water systems manufactured with heat pipes. A series of tests were conducted on a number of systems to elicit the most suitable configuration of the system for possible commercialization in Korea. The heat pipe is made with a copper tube and the respective length of the evaporator, adiabatic, and condenser sections are 1700mm, 100mm and 200mm. The evaportor section is finned with a copper plate to increase solar input for its proper operation as a heat pipe. Results show quite an interesting performance data stemming from the difference in working fluids, presence of wick, and other various design parameters associated with the collection and utilization of solar energy.

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Empirical evaluation of the heating performance by a heat pump system with surplus heat from a greenhouse (온실 태양잉여열을 이용한 히트펌프시스템의 난방 성능평가에 관한 실증 연구)

  • Jeon, Byung-Yong;Park, Youn-Cheol;Ko, Gwang-Soo
    • Journal of Advanced Marine Engineering and Technology
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    • v.41 no.1
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    • pp.99-104
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    • 2017
  • This study evaluated the heating performance of a hybrid heat pump system. The system was installed in a $100-m^2$ greenhouse to utilize surplus solar energy. A hybrid heat pump system was installed at Jocheon-ri, Jeju Island, for an empirical evaluation of the performance. The system consists of a heat storage tank and plate heat exchangers for several heat exchanges between the greenhouse and heat pump or storage tank. The system uses R410a as the working fluid and is controlled automatically by a defined set temperature of the greenhouse. This system incorporates two kinds of heat sources: outdoor air and a storage tank that collects heat from the topside of the greenhouse. The results showed that the heating capacity was 19.9 kW in the outdoor air source mode and 21.4 kW with direct heating from hot water in the thermal storage tank. These results are very similar to those of a previous study.

Performance Evaluation of Hybrid Solar Air-Water Heater when the Heated Air is used as Inlet Air during Air and Water is Heated Simultaneously (가열 공기 유입에 따른 복합형 태양열 가열기 공기-물 제조 성능에 관한 연구)

  • Choi, Hwi-Ung;Yoon, Jung-In;Son, Chang-Hyo;Choi, Kwang-Hwan
    • Journal of the Korean Solar Energy Society
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    • v.35 no.5
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    • pp.21-29
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    • 2015
  • In this study, the performance of hybrid solar air-water heater when the heated air was used as inlet air was investigated during air and liquid were heated simultaneously. Temperature difference between inlet air and ambient was set as $0^{\circ}C$, $13^{\circ}C$ and $22^{\circ}C$ and it was maintained during the daily operation. As a result, thermal efficiency of liquid heating was increased when the inlet air temperature was increased and heat gain of the water in heat storage tank was also increased with increment of temperature difference between inlet air and ambient temperature. On the contrary to this, the decrement of air heating efficiency and total efficiency of collector was confirmed with increment of inlet air temperature and it is considered that heat gain of liquid side is lower than heat loss of air side that occurring by using heated air as inlet air of collector. So, from these results, maximum temperature that the liquid in heat storage tank can reach was expected to increase if the return air or any heated air was used as inlet air. But air and total efficiency of hybrid solar air-water is decreased, so using outdoor air as inlet air is considered as better way on perspective of using of solar thermal energy by hybrid solar collector. However, it is hard to conclude that using outdoor air is better than heated air on the perspective of energy saving of building because the performance of heat storage performance was increased even air and total thermal efficiency was decreased, so the necessity of more profound consideration about these result in further research was confirmed for putting the hybrid solar air-water heater to practical use.

Feasibility of a Solar Thermal Organic Rankine Cycle Power Plant for an Apartment Complex with Aspen Plus® (ASPEN PLUS®를 이용한 태양열 유기랭킨사이클 열병합 발전시스템의 공동주택 적합도 분석)

  • Im, Seokyeon;Kim, Hyung-Geun;Yu, Sangseok
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.39 no.4
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    • pp.317-324
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    • 2015
  • In this study, a solar thermal system is designed to provide hot water and electricity for improvement of solar thermal energy availability in an apartment complex. The electricity is generated with Organic Rankine Cycle (ORC) by the solar thermal energy. R134a, R141b and R245fa are selected for operating fluid of the solar thermal ORC system. ORC with R245fa shows the best performance based on the variation of pressure. The irreversibility of component showed that the technology advance of the evaporator ensures a performance improvement. The sensitivity study results indicate that the turbine performance is most effective way to improve the performance of ORC system. An economic analysis showed that approximately 50% more income could be achieved by a solar thermal ORC system with a hot water supply.

Experimental and Theoretical Study on Silica Gel Regeneration (실리카 젤의 재생에 관한 실험적 및 이론적 연구)

  • 고학균;정도섭
    • Journal of Biosystems Engineering
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    • v.2 no.2
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    • pp.1-14
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    • 1977
  • 현재 선진국에서 널리 이용되고있는 곡물의 화력건조는 곡물의 품질을 손상시킬 뿐만 아니라 손실을 증가시키고 있다. 화력에 의한 건조는 또한 연료의 절약면에서 볼 때 역시 문제점을 내포하고있다.l 이러한 문제점들을 해결하기 위하여 근래에는 실리카 젤과 같은 흡습성의 건조제를 사용한 곡물의 건조 실험이 진행 중에 있으며 좋은 결과를 보여주고 있다. 실리카겔은 그 자체무게의 40% 까지 동적 및 정적하에서 수분을 흡수하는 성질을 가지고 있으며 일단 포화상태가 되면 수천번 재생이 가능하다. 본 연구에서는 이와같은 실리카텍의 재생실험을 일차적으로 실내에서 공기의 온도를 일정하게 한 상태에서 실시하였으며 일반적으로 실리카 젤은 $300^{\circ}F$에서 완전재생이 가능하나 본 실험에서 사용된 재생온도는 평면식 태양열 집열기로부터 얻을 수 있는 $150^{\circ}F$ 내외에서 시도하였다. 본실험과 병행하여 건조중 공기와 실리카 젤의 에너지 및 질량변화에 따른 이론식을 만들어 주어진 여러 가지 조건에 대하여 4개의 미분방정식을 컴퓨터에 의하여 해결하였으며 건조(재생) 시간에 따른 공기의 온도와 흡습 및 실리카 젤의 함수량을 구하였다. 위의 이론적인 분석결과는 후에 태양열집열기를 이용한 재생실험을 분석하는데 적용될 것이다. 본 연구결과를 요약하면 다음과 같다. 1. 본 연구에서 유도한 이론식은 실리카 젤의 재생온도를 만족스럽게 표시하였으며 재생시간에 따른 공기의 온도와 흡습 및 실리카 젤의 함수량변화의 이론치는 실험치와 근사하였다. 2. 이론치와 실험치를 일치시키기위하여 흡착온도에서 산출된 열 및 질량 전달계수를 1/5로 조정 사용하였다. 3. 실리카 젤은 $120^{\circ}F$에서 9 %, $180^{\circ}F$에서 1% 내외로 재생이 가능하였다. 4. 본 연구에서 유도된 이론적 분석방법은 다른 여러 가지 형태의 물질 및 건조 또는 냉각 과정을 분석하는데 사용될 수 있다.

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Computational Fluid Dynamics Model for Solar Thermal Storage Tanks with Helical Jacket Heater and Upper Spiral Coil Heater (상부 코일히터를 갖춘 나선재킷형 태양열 축열조의 성능예측을 위한 CFD 해석모델 개발 및 검증)

  • Baek, Seung Man;Zhong, Yiming;Nam, Jin Hyun;Chung, Jae Dong;Hong, Hiki
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.4
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    • pp.331-341
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    • 2013
  • In a solar domestic hot water (SDHW) system, solar energy is collected using collector panels, transferred to a circulating heat transfer fluid (brine), and eventually stored in a thermal storage tank (TST) as hot water. In this study, a computational fluid dynamics (CFD) model was developed to predict the solar thermal energy storage in a hybrid-type TST equipped with a helical jacket heater (mantle heat exchanger) and an immersed spiral coil heater. The helical jacket heater, which is the brine flow path attached to the side wall of a TST, has advantages including simple system design, low brine flow rate, and enhanced thermal stratification. In addition, the spiral coil heater further enhances the thermal performance and thermal stratification of the TST. The developed model was validated by the good agreement between the CFD results and the experimental results performed with the hybrid-type TST in SDHW settings.