• 제목/요약/키워드: solar heat collector

검색결과 253건 처리시간 0.025초

복합형 태양열 가열기에서 열매체 단일운전에 따른 기기성능 평가 (Performance Estimation of Hybrid Solar Air-Water Heater on Single Working of Heating Medium)

  • 최휘웅;윤정인;손창효;최광환
    • 한국태양에너지학회 논문집
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    • 제34권6호
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    • pp.49-56
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    • 2014
  • Research about hybrid solar air-water heater that can make heated air and hot water was conducted as a part of improving efficiency of solar thermal energy. At this experiment, ability of making heating air and hot water was investigated and compared with traditional solar air heater and flat plate solar collector for hot water when air or liquid was heated respectively. Comparing hybrid solar air-water heater that used in this experiment to other solar air heater studied already, it has a lower efficiency at same mass flow rate. Air channel structure, fin's shape and arrangement in the air channel result in these difference then the ability of air heating need to be improved with changing these thing. In case of making hot water, performance was shown as similar with traditional system although the air channels were established beneath absorbing plate. But the heat loss coefficient was shown higher value by installing of air channel. Also the performance of hot water making was shown lower value at same liquid mass flow rate with traditional flat plate solar collector for hot water. So the necessity of performance improvement at lower mass flow rate of each heating medium can be confirmed.

태양열 온수시스템 배관 최적설계 (Optimized Design of Piping Array in Solar Hot Water System)

  • 신정철
    • 에너지공학
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    • 제22권3호
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    • pp.302-306
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    • 2013
  • A simple method for balancing flow rates in arrays of parallel connected flat plate solar collectors has been developed. The method is based on a computer program which solves for the flow rate through each of the collectors in a reverse return plumbed array. The analysis uses conventional "K-value" techniques and assumes the effects of density variations within the system to to be negligible. It has been found that by appropriately sizing the inlet and outlet manifolds, flow maldistribution can be nearly eliminated without resorting to expensive or complicated balancing techniques.

유리온실의 태양열 집열방법별 집열효과 (Heating Efficiency of Difference Heat Collection Methods for Greenhouse)

  • 최영하;이재한;권준국;박동금;이한철
    • 생물환경조절학회지
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    • 제9권3호
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    • pp.166-170
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    • 2000
  • 자연열(태양열)을 효율적으로 이용하기위해 1999년부터 2000년 까지 2년간 상면적이 100$m^2$인 3동의 유리온실에 각기 다른 집열시스템을 설치하였다. 즉, 집열면적과 경사도가 각각 24$m^2$, 50$^{\circ}$로서 현재 시판되고 있는 태양열 집열기(평판형, Solar hart Inc.)를 이용하는 방법, 직경과 송풍량이 각각 1m, 2.5m$^{-3}$.m$^{-2}$ .min로서 라디에이터가 부착된 2개의 유동팬을 천장부에 설치하고 천창을 밀폐한 후 온실상부의 열을 집열하는 방법, 온실의 중도리 전부를 물이 순환되는 각관 (75x45x3t, 1m 간격x10줄x온실길이 12m=120m)으로 설치하여 집열하는 방법 등으로 하였다. 각 동마다 지하에 26톤의 저수 능력을 갖는 D2000xW1500xL8600의 축열조를 설치한 후 중간을 막아 저온수조와 고온수조로 구분하였고, 수조 중간 1.5m 높이에 통수로를 내어 일정량의 물(약 15톤)이 지속적으로 순화될 수 있도록 하였다. 최저기온 9$^{\circ}C$로 설정하여 1,000$m^2$를 공간 난방할 경우 난방연료 절감율은 태양열 집열기, 유동팬 및 각관에서 각각 7%, 19%, 28%로 나타났다. 태양열 집열기를 이용하는 대부분의 농가에서는 40~50$m^2$ 정도의 집열면적을 갖는 집열기를 이용하고 있는데 이 경우 년간 난방연료 절감율은 14% 정도로서 경제성이 없으며, 유동팬도 집열효율에 비해 제작, 설치 및 유지비가 과다하게 소요되므로 경제성이 없다. 각관의 경우 관 자체의 자재비나 설치비에 추가부담이 적으면서 집열효율이 비교적 높기 때문에 관의 부식, 골조 표면적 증가에 의한 시설내 차광 증가, 중도리의 각형 구조로 인한 강도저하 등의 문제가 해결되면 집열 방법으로 고려될 수 있을 것이다.

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$5kW_t$급 접시형 태양열 집열기의 설계 및 예비 성능실험 (Design and Preliminary Performance Test for 5kWt Dish Solar Collector)

  • 서주현;마대성;김용;서태범;한귀영
    • 한국태양에너지학회 논문집
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    • 제27권4호
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    • pp.113-120
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    • 2007
  • The 5kWt dish solar collector is designed and the preliminary performance test for this is carried out. The diameter of the parabolic dish is 3.2 m, and its focal length is 2 m. It consists of 10 small reflectors which have their own curvatures, and the effective reflecting area is $5.9\;m^2$, and the rim angle of the dish is $43.85^{\circ}$. The reflectivity of reflectors is 0.95, and the thermal capacity of the system is about 5 kW thermal. The aperture diameter of the cylindrical-shape receiver which is made of stainless steel is 100 mm, and the height is 210 mm. A quartz window is installed at the receiver aperture to minimize the convective heat loss and prevent air leakage. In order to increase the heat transfer area, porous materials (nickel-alloy) are inserted into the receiver. Air flows into the upper part of the receiver which is the opposite side of the aperture. After the air flows through the inside of the receiver, that goes out of the receiver through 3 exits which are located near the aperture. The volumetric flow rates of air are varied from 600 to 1200 L/min. The results show that the system efficiency and receiver efficiency increase as the volume flow rate increases.

Heat Losses from the Receivers of a Multifaceted Parabolic Solar Energy Collecting System

  • Seo, Taebeom;Ryu, Siyoul;Kang, Yongheock
    • Journal of Mechanical Science and Technology
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    • 제17권8호
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    • pp.1185-1195
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    • 2003
  • Heat losses from the receivers of a dish-type solar energy collecting system at the Korea Institute of Energy Research (KIER) are numerically investigated. It is assumed that a number of flat square mirrors are arranged on the parabolic dish structure to serve as a reflector. Two different types of receivers, which have conical and dome shapes, are considered for the system, and several modes of heat losses from the receivers are thoroughly studied. Using the Stine and McDonald model convective heat loss from a receiver is estimated. The Net Radiation Method is used to calculate the radiation heat transfer rate by emission from the inside surface of the cavity receiver to the environment. The Monte-Carlo Method is used to predict the radiation heat transfer rate from the reflector to the receiver. Tracing the photons generated, the reflection loss from the receivers can be estimated. The radiative heat flux distribution produced by a multifaceted parabolic concentrator on the focal plane is estimated using the cone optics method. Also, the solar radiation spillage around the aperture is calculated. Based on the results of the analysis, the performances of two different receivers with multifaceted parabolic solar energy collectors are evaluated.

콤팩트형 태양열/지열히트펌프 하이브리드 냉난방 및 급탕 시스템 개발 및 성능분석 (The Development and Performance Analysis of Compact Type Solar Thermal/Ground Coupled Heat Pump Hybrid System for Heating, Cooling and Hot water)

  • 백남춘;정선영;윤응상;이경호
    • 한국태양에너지학회 논문집
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    • 제32권5호
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    • pp.59-67
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    • 2012
  • In this study,the compact type solar thermal and ground coupled heat pump hybrid system for space heating/cooling and hot water supply has been developed. This hybrid system was installed in Zero Energy Solar House(ZeSH) in KIER for the demonstration. The thermal performance and operational characteristics of this hybrid system were analysed especially. The results are as follows. (1) This hybrid system was designed in order to address the existing disadvantages of solar thermal/ground coupled heat pump system. For this design, all parts except solar collector and ground coupled heat pump were integrated into a single product in a factory. The compact type unit includes two buffer tanks, an expansion tank, pumps, valves, a controller, etc. This system has an advantage of easy installation with simple plumbing work even in narrow space. (2) The thermal charging and discharging time of the buffer tanks and its characteristics by ground coupled heat pump, and heat pump COP according to geo-source temperature and buffer storage temperature have been studied. This system was found to meet well to the heat load without any other auxiliary heating equipment. (3) The operating hours of the ground coupled heat pump as a backup device of solar thermal can be reduced significantly by using solar heat. It was also found that the minimum heating water supply setting temperature and maximum cooling water supply setting temperature make an influence on the heat pump COP. The lower heating water and the higher cooling water temperature, the higher COP. In this respect, the hybrid system's performance can be improved in ZeSH than conventional house.

물-에탄올 혼합물을 작동유체로 하는 진공관형 태양열 집열기용 히트파이프의 작동특성 (Performance Characteristics of a Heat Pipe Having Water-Ethanol Mixture as Working Fluid for Evacuated Solar Collectors)

  • 정의국;부준홍;곽희열
    • 한국태양에너지학회 논문집
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    • 제28권5호
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    • pp.78-84
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    • 2008
  • Heat pipes are considered to be promising candidates to enhance the heat transport capability of evacuated solar collectors in a wide temperature range. The working fluid must be selected properly considering various operating conditions of heat pipes for medium-high temperature range to avoid dry-out, local overheating, and frozen failure. The advantage of using binary mixture as heat pipe working fluid is that it can extend operating temperature range of the system as it can overcome operating temperature limit of a single fluid. Various operating temperature ranges were imposed in the experiments to simulate the actual operation of solar collectors using water-ethanol binary mixture. Tests were conducted for the coolant temperature range of -10$^{\circ}C$ to 120$^{\circ}C$, and mixing ratio range was from 0 to 1 based on mass fraction.

Overall efficiency enhancement and cost optimization of semitransparent photovoltaic thermal air collector

  • Beniwal, Ruby;Tiwari, Gopal Nath;Gupta, Hari Om
    • ETRI Journal
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    • 제42권1호
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    • pp.118-128
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    • 2020
  • A semitransparent photovoltaic-thermal (PV/T) air collector can produce electricity and heat simultaneously. To maximize the thermal and overall efficiency of the semitransparent PV/T air collector, its availability should be maximum; this can be determined through a Markov analysis. In this paper, a Markov model is developed to select an optimized number of semitransparent PV modules in service with five states and two states by considering two parameters, namely failure rate (λ) and repair rate (μ). Three artificial neural network (ANN) models are developed to obtain the minimum cost, minimum temperature, and maximum thermal efficiency of the semitransparent PV/T air collector by setting its type appropriately and optimizing the number of photovoltaic modules and cost. An attempt is also made to achieve maximum thermal and overall efficiency for the semitransparent PV/T air collector by using ANN after obtaining its minimum temperature and available solar radiation.

태양열을 이용한 곡물건조에 관한 연구 (Review on the Use of Solar Energy for Grain Drying)

  • 금동혁;고학균;최재갑
    • Journal of Biosystems Engineering
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    • 제3권1호
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    • pp.64-76
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    • 1978
  • A dimensional supply of petroleum fuels and increased competition for petroleum products has made the conservation of energy in grain drying an important cost and management factor. Research on solar grain drying is directed toward utilization of a renewable energy source as an alternative to petroleum fuels for drying. There are many technical and economic problems in accepting and adopting solor energy as a new energy source for grain drying. The purpose of this study are to assess the state of the art of solar grain drying and to find out the problems by reviewing literatures available. The results obtained may be summarized as follows; 1.It may be considered that the weather conditions in October of Korea was satisfactory for the forced natural air and solar heated air drying. 2. Solar energy is considered more applicable to low-temperature, In-storage drying systems than to high-temperature, high-speed drying systems. In-storage drying systems require low levels of heat input. The costs of collector systems to provide low temperature are considerably cheaper than for high-temperature systems. 3. Tubular type collector made of polyvinyle film seems to be the most practical at this stage of development and black-painted bare-plate collectors mounted on the outside of a typical, round, low-temperature drying bin can supply an appreciable amount of the energy efficiently needed for low-temperature grain drying at a lower cost. 4. All of the grains in solar drying tests was successfully dried up to safe storaged moisture levels without significant spoilage. Drying rates with solar system were faster than natural air drying systems, and usually a little slower than similar low-temperature electric drying systems. 5. Final grain moisture levels were lower in solar tests than in natural air tests, and generally higher than in tests with continuous heated air. 6. Savings of energy by use of solar collectors ranged from 23% to 55%, compared to the natural and electric ileated air drying systems. However, total drying cost effectiteness tvas not significant. Therefore, it is desirable that solar grain dry-ing sIFstems tvhich could be suitable for multiple heating purposes on farms shouldbe developed. 7. Supplemental heat with solar radiation did little to reduce air flow requirementsbut refuced drying time and increased the p\ulcornerobability of successful drying duringdrying poriod.

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단독주택용 태양열/지열 융복합시스템의 태양열 급탕성능 평가 (An Evaluation of the Solar Thermal Performance of the Solar/Geo Thermal Hybrid Hot Water System for a Detached House)

  • 백남춘;한승현;이왕제;신우철
    • 설비공학논문집
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    • 제27권11호
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    • pp.581-586
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    • 2015
  • In this study, an analysis was performed on the performance of the solar water heating system with geo-thermal heat pump for a detached house. This system has a flat plate solar collector ($8\;m^2$) and a 3 RT heat pump. The heat pump acts as an auxiliary heater of the solar water heating system. These systems were installed at four individual houses with the same area of $100\;m^2$. The monitoring results for one year are as follows. (1) The average daily operating time of the solar system appeared to be 313 minutes in spring (intermediate season), and 135 minutes and 76 minutes in winter and summer respectively. The reason for the short operating time in summer is the high storage temperature due to low water heating load. The high storage temperature is caused by a decrease in collecting efficiency as well as by overheating. (2) The geothermal heat pump as an auxiliary heater mainly operates on days of poor insolation during the winter season. (3) Despite controlling for total house area, hot water consumption varies greatly according to the number of people in the family, hot water usage habits, etc. (4) The yearly solar fraction was 69.8 to 91.5 percent, which exceeds the maximum value of 80% as recommended by ASHRAE. So the solar collector area of $8\;m^2$ appeared to be somewhat greater for the house with an area of $100\;m^2$. (5) The observed annual efficiency of solar systems was relatively low at 13.5 to 23.6%, which was analyzed to be due to the decrease in thermal efficiency and the overheating caused by a high solar fraction.