• 제목/요약/키워드: 태양 냉방

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국내 태양열 냉난방시스템 겸용 설치사례

  • 윤장수;조장현
    • 대한설비공학회지:설비저널
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    • 제40권5호
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    • pp.18-24
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    • 2011
  • 태양열 집열기에서 생산된 열원을 축열한 축열조의 온수를 겨울에는 직,간접 열교환을 통하여 난방을 실현하고 축열조의 여름에는 흡수식 냉동기 발생기(Generator)에 공급하여 흡수식 냉동기를 가동하고 냉동기에서 생산된 저온의 냉수로 냉방을 실현하는 태양열 냉난방 겸용시스템에 대한 설치 사례를 소개하고자 한다.

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사무소 건물 적용 태양열냉난방시스템의 냉방성능 분석 (Cooling Performance Analysis of Solar Heating and Cooling System in an Office Building)

  • 장재수;고명진;김용식
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2011년도 춘계학술발표대회 논문집
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    • pp.217-222
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    • 2011
  • This study examined the cooling performance of a solar heating and cooling system for an office building using the dynamic simulation program (TRNSYS). This solar heating and cooling system incorporates evacuated tube solar collectors of $204m^2$, storage tank of $8m^3$, 116.2kW auxiliary heater, single-effect $LiBr/H_2O$ absorption chiller of 20RT nominal cooling capacity. It was found that for the representing day showed peak cooling load the annual average collection efficiency of the collector was 32.9% and coefficient of performance of single-effect $LiBr/H_2O$ absorption chiller was 0.68. And the results shows for the cooling season the solar fraction of the solar heating and cooling system was 32.2% and maximal and minimal solar fraction was 63.4% for May 17.9% for July respectively.

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고정식 태양 집광판의 설치각도 최적화에 관한 연구 (Study on Optimization of Tilt Angle for Stationary Solar Voltaic Module)

  • 김문기;김대영;윤홍선
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2017년도 춘계공동학술대회
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    • pp.129-129
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    • 2017
  • 태양광 발전으로 생산된 전력으로 냉방기나 난방기를 직접 구동하는 경우에 냉방을 위해서는 7,8,9월 집광량이 많아야 하고, 난방을 위해서는 12,1,2월에 집광량이 많아야 한다. 하지만 일반적으로 사용되는 집광판은 평판형의 고정식이 대부분으로 필요에 따라서 집광량을 변동시키는 것이 불가능하다. 따라서 전력부하가 가장 큰 시기에 집량광이 가장 많아지도록 설치되어야 한다. 본 연구에서는 최적의 집광판 설치조건을 구명하기 위하여 집광판의 설치 각도에 따른 년중 일사량을 예측하기 위한 모델을 개발하고 계산된 일사량과 기상청에서 실측한 일사량을 비교하였다. 분석 대상은 대전(북위 36도 22분)으로 하였다. 년간 최대 일사량을 확보할 수 있는 집광판 설치각은 $36^{\circ}$로 분석되었다. 반면에 월별로 최대 일사량을 확보하기 위한 집광판 설치각도는 1월에 $57^{\circ}$, 2월에 $48^{\circ}$, 3월에 $36^{\circ}$, 4월에 $24^{\circ}$, 5월에 $15^{\circ}$, 6월에 $12^{\circ}$, 7월에 $15^{\circ}$, 8월에 $24^{\circ}$, 9월에 $36^{\circ}$, 10월에 $45^{\circ}$, 11월에 $57^{\circ}$, 12월에 $60^{\circ}$로 예측되었다. 한편 냉방부하가 많은 6.7.8.9월에 최대 일사량을 확보하기 위한 집광판 설치각도는 $21^{\circ}$로 예측되었다. 이상의 결과로 볼 때 태양광 발전을 위한 집광판은 전력부하와 용처에 따라 적정한 설치각도를 결정하는 것이 중요한 것으로 판단되었고, 본 연구에서 개발된 예측모델이 이러한 작업에 유효하게 사용될 수 있을 것으로 판단되었다.

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태양열제습냉방시스템 중 재생기의 충진층 내 열물질 전달계수에 관한 예측 (Prediction on heat and mass transfer coefficients in a packed layer of a regenerator with a solar desiccant cooling system)

  • 에프리타 요한나;최광환
    • 한국태양에너지학회 논문집
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    • 제30권4호
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    • pp.36-42
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    • 2010
  • 본 논문은 태양열이용 냉난방시스템 중에서 실제로 액체흡수제를 재생하는 재생탑 내의 충진층에 있어서의 열 및 물질전달의 실험치와 이론적 해석에 의한 결과치와의 비교를 나타내고 있다.특히 물질전달의 극대화를 위하여 충진층 내에서 공기와 흡수제의 접촉면적을 크게 할 필요가 있는데,이를 위해서 본 실험에서는 직경이 3cm인 플라스틱제 충진재를 사용하였으며, 흡수제로는 저농도의 염화리튬 수용액이 사용 되었다. 충진층 내에서의 최적 높이를 예측하기 위하여 해석의 모델인 실험장치를 직접 제작하여 실험을 수행하였고, 이론 해석에 있어서 체적 열전달을 고려한 정상상태를 모델화하여 해석하였다. 이 결과, 충진층 내에서 실험치와 이론적인 계산치가 잘 일치함을 알 수 있었으며, 충진층의 높이가 2m 이상인 경우에는 높이에 따른 재생량의 차이가 없어서 없음을 알 수 있었다.

태양열 냉방 및 급탕 시스템의 제어 조건에 따른 열성능 (Thermal Performance of Solar Cooling & Hot-water System According to Control Condition)

  • 이호;주홍진;김상진;곽희열
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2008년도 추계학술발표대회 논문집
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    • pp.214-219
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    • 2008
  • This study is describes thermal performance of solar cooling and hot water for demonstration system with ETSC(Evacuated tubular solar collector) installed at Seo-gu culture center of Kwanju. Control condition for solar cooling and hot water system is changed by connection of auxiliary heater. Demonstration system was connected to central air conditioning system. Demonstration system was operated by two types. First type(A) was operated to cooling and hot water supply in that order. Second type(B) was operated to hot water supply and cooling in that order. As a result. it was indicated that the total solar energy consumption of (A) was 799 MJ and the solar energy consumption rate for the cooling and hot water supply was 70% and 30% respectively. Total solar energy consumption of (b) was 898 MJ and the solar energy consumption rate for the cooling and hot water supply was 31% and 69% respectively.

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태양열 이용 소용량 제습냉방시스템 (Small-Capacity Solar Cooling System by Desiccant Cooling Technology)

  • 이대영;권치호
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2008년도 춘계학술대회 논문집
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    • pp.154-156
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    • 2008
  • A prototype of the desiccant cooling system with a regenerative evaporative cooler was built and tested for the performance evaluation. The regenerative evaporative cooler is to cool a stream of air using evaporative cooling effect without an inc6rease in the humidity ratio. It is comprised of multiple pairs of dry and wet channels and the evaporation water is supplied only to the wet channels. By redirecting a portion of the air flown out of the dry channel into the wet channel, the air can be cooled down to a temperature lower than its inlet wet-bulb temperature at the outlet end of the dry channels. Incorporating a regenerative evaporative cooler eliminates the need for deep dehumidification in the desiccant rotor that is necessary to achieve low air temperature in the system with a direct evaporative cooler. Subsequently, the regenerative evaporative cooler enables the use of low temperature heat source to regenerate the dehumidifier permitting the desiccant cooling system more beneficial compared with other thermal driven air conditioners. At the ARI condition with the regeneration temperature of $60^{\circ}C$, the prototype showed the cooling capacity of 4.4 kW and COP of 0.75.

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사무소건물의 에너지절약형 냉방시스템 성능분석에 관한 연구 (A Study on the Perfomance Analysis of Low Energy Cooling Systems in Office building)

  • 박창봉;이언구
    • 한국태양에너지학회 논문집
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    • 제30권6호
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    • pp.89-94
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    • 2010
  • A large portion of the energy cost of a building is cooling and heating to maintain a comfortable indoor environment. Air conditioning is now one of the important parts in the building design, as increase in energy consumption and pollutant emission in energy conversion process. In this study, elements that affects the energy consumption of model building are identified and the perfomance analysis of the alternative a Low Energy Cooling Systems considering characteristics of model building and energy saving performance is analyzed. In this study, elements that affect the energy consumption of office building are identified and energy saving performance of the alternative air conditioning system is analyzed. As a result, applied to earn and suggest basic data for energy saving measures. In this study, EnergyPlus simulation program was used to evaluate the energy load when alternative Low Energy Cooling Systems are applied to the model building. The reliability of simulation program is verified by comparing actual energy load from operation data of building management office and predicted energy load using simulation program. For Low Energy Cooling System application which considers the purpose and characteristics of the building, reasonable and energy-saving air conditioning method obtained by analyzing energy consumption elements for each expected air conditioning methods is used to deduct result of this study.

건물냉방시스템에 해양심층수 적용의 경제성 분석 (Economic Feasibility Assessment of a Deep Sea Water District Cooling System)

  • 김삼열;조수
    • 한국태양에너지학회 논문집
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    • 제29권2호
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    • pp.14-21
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    • 2009
  • Recently, alternative energy resources have emerged considerably due to the high oil prices and environment problems. Deep sea water that is one of the natural energy sources can be one of the attractive solutions to reduce the environment problems, and there are already a few examples in some developed countries. In this study, cooling system of deep sea water using heat exchangers of two hotels, located in near Haeundae Bay in Busan, have been analyzed on the quantity of electricity and gas use comparison between existing cooling system and deep seawater cooling system by using E-Quest simulation program. The results of the study showed that the Hotel A approximately saves 370 millions won per year, and the Hotel B saves 248 millions won per year. It means that the cooling system by using deep sea water has great worth to reduce the ratio of fuel sources.