• 제목/요약/키워드: Air-heating Collector

검색결과 101건 처리시간 0.023초

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

  • 최휘웅;윤정인;손창효;최광환
    • 한국태양에너지학회 논문집
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    • 제35권5호
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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.

냉매를 작동유체로 사용하는 태양열 난방시스템에 관한 연구 (A study on the solar assisted heating system with refrigerant as working fluid)

  • 김지영;고광수;박윤철
    • 한국태양에너지학회 논문집
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    • 제25권4호
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    • pp.37-44
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    • 2005
  • An experimental study was conducted to analyze performance of a heating system with variation of control logic of the system. The system uses a solar as heat source and composed with heat pump that uses R-22 as working fluid. The difference between the developed system and the commercially available heating system is working fluid. The solar assisted heating system which was widely distributed in the market uses water as a working fluid. It could be freezing in case of the temperature drops down under freezing point. The anti-freezing fluids such as methyl-alcohol or ethylene-glycol are mixed with the water to protect the freezing phenomena. However, the system developed in this study uses a refrigerant as a working fluid. It makes the system to run under zero degree temperature conditions. Another difference of the developed system compare with commercial available one is auxiliary heating method. The developed system has removed an auxiliary electric heater that has been used in conventional solar assisted heating system. Instead of the auxiliary electric heater, an air source heat exchanger which generally used as an evaporator of a heat pump was adapted as a backup heating device of the developed system. As results, an efficiency of the developed system is higher than a solar assisted heat pump with auxiliary electric heater. The merit of the developed system is on the performance increment when the system operates at a lower solar energy climate conditions. In case of the developed system operates at a normal condition, COP of the solar collector driven heat pump is higher than the air source heat exchanger driven heat pump's.

태양열에 의한 냉방 및 난방시스템의 성능향상(I) - TRNSYS에 의한 동직열부하 계산과 태양열 시스템의 최적화 - (Improvement of the Performance of Solar Cooling Heating Systems(I) - Dynamic Load Calculation Using TRNSYS and an Optimization of Solar Systems -)

  • 강용태;김효경;노승탁
    • 대한설비공학회지:설비저널
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    • 제17권6호
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    • pp.696-707
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    • 1988
  • This study simulates a typical solar system using the transient simulation program TRNSYS, and calculates the maximum cooling load of the model room of $50m^2$. In this study, energy rate control method is used in calculating a maximum cooling load. On the ground of the maximum cooling load of the model room, the variables that have an effect on the solar collection performance of the solar system are made a selection. Also in this study the trend of the solar collection performance is shown as the variables change. The results show that the variables which have an effect on the collection performance are collector area, collector mass flow rate, collector slope and the volume of storage tank, and the optimal value of Ac/Vt is not constant but varies as the collector area and the collector mass flow rate. Also the results show that for cooling system the optimal value of the collector slope is latitude minus $15^{\circ}$ during the seasonal operations, and twenty percent of the maximum cooling load is saved with the aid of the solar energy.

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복합형 태양열 가열기의 일일 운전 특성 및 축열 성능에 관한 연구 (A Study on Thermal Storage Performance and Characteristics of Daily Operation of a Hybrid Solar Air-Water Heater)

  • 최휘웅;파쿠르 로커만;윤정인;손창효;최광환
    • 한국태양에너지학회 논문집
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    • 제35권3호
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    • pp.73-79
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    • 2015
  • In this study, a thermal storage performance and characteristics of daily operation were investigated when the air and the liquid were heated simultaneously by a hybrid solar air-water heater that can make hot water as well as heated air. The hybrid solar air-water heater is kind of a flat plate solar collector that can make hot water and heated air by installing air channel beneath absorber plate of traditional flat plate solar collector for hot water. As a result of daily operation, maximum water temperature reached in a thermal storage was shown $44^{\circ}C$ on 73kg/h of air mass flow rate and about $40^{\circ}C$ on 176kg/h of air mass flow rate. Thus, the necessity of heating water in thermal storage by operating only liquid side was confirmed when the temperature of liquid in thermal storage is lower than we need. In case of efficiency investigated on daily operation, the thermal efficiency of the liquid side was decreased with increment of the inlet liquid temperature and decrement of the solar radiation, but efficiency of the air side was increased with increment of inlet liquid temperature difference as the traditional solar air heater. Total thermal efficiency of the collector was shown from 65.85% to 78.23% and it was decreased with increment of the inlet liquid temperature and decrement of solar radiation same as the traditional system.

태양열 이용 냉난방 공조시스템중 평판형 집열기의 동계 상부 열손실 해석 (Analysis of the Top Loss Coefficient for Flat Plate Collector in a Solar Air-Conditioning System during Winter)

  • 김보철;최광환;금종수;김종렬
    • 태양에너지
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    • 제18권3호
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    • pp.15-24
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    • 1998
  • 태양열 집열기의 열손실은 크게 3가지 즉 상부 열손실, 하부 열손실, 측부 열손실로 대별되나 단열이 양호한 집열기에서는 일반적으로 측면으로의 열손실은 무시한다. 측부 열손실을 제외한 두 열손실 중에서도 상부 열손실은 집열기의 대부분의 열손실을 차지하는 지배적인 요소이다. 따라서 태양열 집열기의 집열 성능을 정확하게 파악하기 위해서는 상부 열손실 계수를 정확하게 계산할 필요가 있다. 본 연구에서 사용한 평판형 태양열 집열기(재생기)는 하계에는 제습 및 냉방을 행하고 동계에는 난방을 행하는 전천후 집열판으로 제작되었다. 따라서 장치의 전환없이 겨울에 난방용으로 사용하였을 경우의 집열 성능을 파악하기 위하여 옥외에서 실험을 하였다. 동계 기간 실험을 통하여 본 집열기의 상부 열손실 계수는 약 $3{\sim}4.5W/m^2^{\circ}C$임을 알 수 있었다. 그리고 집열표면에 선택흡수막을 입혀서 난방용으로 사용하면 주위와의 복사 열손실을 크게 줄일 수 있기 때문에 본 집열기의 집열 성능을 향상시킬 수 있을 것으로 사료된다.

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태양열 및 외기 열원식 히트펌프 시스템 시뮬레이션 (Simulation of Solar and Ambient-air-assisted Heat Pump)

  • 백남춘;박준언;송병하;이진국;김홍제
    • 태양에너지
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    • 제20권4호
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    • pp.17-24
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    • 2000
  • Thermal performance of a SAAHPS (Solar and Ambient-air-assisted Heat Pump System) located in KIER is simulated with TRNSYS 14.2. The SAAHPS is composed of dual evaorators, each of which is used as a solar fluid heat source and an air fluid heat source. Polynomial coefficients data for the SAAHPS is supplied with Frigosoft, a program widely used for heat pump modeling. In general, collector area and storage volume are 2 key parameters in SAAHPS thermal performance. A parametric study is performed in this study to assess sensitivity of collector area and storage volume in SAAHPS. We concluded that firstly collector area and storage volume are the primary variables in SAAHPS thermal performance, secondly COP of SAAHPS is higher than that of conventional heat pumps. Therefore. collector efficiency can be enhanced swith SAAHPS during a heating season.

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PTC와 평판형 태양열집열기의 성능평가 비교 연구 (The Comparative Study on Performance of PTC and Flat-plate Solar Collector)

  • 김인환;허남수;김만석;이정언
    • 한국태양에너지학회 논문집
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    • 제30권6호
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    • pp.28-33
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    • 2010
  • Solar collectors to be applied are mainly flat-plate or vacuum tube collector which is used for hot water supply of house because of low heat value and low temperature. There are a necessity to expand applicable scope of solar collector into the industrial process heat source and air conditioner for coping with renewable energy policy of government and industrial trend. This study is to analysis the performance of PTC solar collector of concentrating type and flat-plate of non-concentrating. For this, temperature difference and heating value as insolation of air outside is measured from these two collectors mounted on 2-axial solar tracking system. It is investigated that temperature profile obtained from PTC solar collector is uniform and collecting heat per unit area is 6.8kcal/$m^2$ min which is about 3 times with compare to flat-plate collector of 2kcal/$m^2$min. Also the amount of heat to be produced from PTC solar collector is 3 Mcal/$m^2$ which is about 2 times with compare to flat-plate collector of 1.5Mcal/$m^2$ as a result of operating these two collectors during one month. Therefore, it is obtained that heat collecting performance of PTC solar collector is superior to flat-plate.

벌집형구조 집열기의 실험연구 (Experimental Study on the Honeycomb Structure Collector)

  • 이종호
    • 태양에너지
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    • 제7권2호
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    • pp.54-64
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    • 1987
  • Experiments on honeycomb structure collectors (HSC with/without cover) were performed and the experimental results showed good agreement with the preceding analytical results. The tendency of the efficiency of HSC was same with that of conventional air-type solar collector, even though there were some seasonal differences. Therefore, HSC, which can be itself utilized as a part of building structure, is applicable to space heating as well as preheating of industrial process and drying.

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건물 적용 유형별 BIPVT 집열기 열적 실험성능 비교 (The Thermal Performance Comparison of BIPVT Collector Applied on Roofs and Facades)

  • 강준구;김진희;김준태
    • 한국감성과학회:학술대회논문집
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    • 한국감성과학회 2009년도 추계학술대회
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    • pp.269-272
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    • 2009
  • The temperature of PV modules that integrated into building facades or roof increases that could reduce the electrical efficiency of the PV system. In order to incresae PV system's efficiency it is very important to remove the heat from the PV modules. For this purpose, hot air can be extracted from the space between PV modules and building envelope, and used for heating in buildings. The solar collector utilizing this thermal effect is called photovoltaic-thermal(PVT) solar collector. This paper compares the experimental performance of building-integrated PVT collectors that applied on building roof and facade. There are two different case: a roof-integrated PVT type and a facade-integrated PVT type. The experimental results show that the collected thermal energy of the roof-integrated type was 24% higher, compared to that of the facade-integrated.

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