• 제목/요약/키워드: Solar module

검색결과 737건 처리시간 0.033초

VMD 모듈의 열성능 특성 연구 (A Study on the Thermal Characteristics of Vacuum Membrane Distillation Module)

  • 주홍진;양용우;곽희열
    • 한국태양에너지학회 논문집
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    • 제34권5호
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    • pp.23-31
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    • 2014
  • This study was accomplished to get the foundation design data of VMD(Vacuum Membrane Distillation) system for Solar Thermal VMD plant. VMD experiment was designed to evaluate thermal performance of VMD using PVDF(polyvinylidene fluoride) hollow fiber hydrophobic membranes. The total membrane surface area in a VMD module is $5.3m^2$. Experimental equipments to evaluate VMD system consists of various parts such as VMD module, heat exchanger, heater, storage tank, pump, flow meter, micro filter. The experimental conditions to evaluate VMD module were salt concentration, temperature, flow rate of feed sea water. Salt concentration of feed water were used by aqueous NaCl solutions of 25g/l, 35g/l and 45g/l concentration. As a result, increase in permeate flux of VMD module is due to the increasing feed water temperature and feed water flow rate. Also, decrease in permeate flux of VMD module is due to increasing salinity of feed water. VMD module required about 590 kWh/day of heating energy to produce $1m^3/day$ of fresh water.

회전 반사판을 이용한 태양광발전장치의 발전량 향상 (Improvement of the Power Generation of Photovoltaic Generation System using Rotating Reflector)

  • 홍경진
    • 한국인터넷방송통신학회논문지
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    • 제20권5호
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    • pp.157-162
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    • 2020
  • 기존의 태양광발전장치 중에서 반사판을 갖춘 장치는 태양에너지(일사량)를 태양광 모듈 표면에 집중적으로 입사되는 방식이지만 태양광 모듈을 통해 다시 반사되어 손실되는 태양에너지(일사량)는 고려되지 않는 구조로 되어있다. 또한, 태양광 모듈 주위에 반사판을 설치하여 발전량을 높이는 방안이 제시되고 있지만, 이는 다른 태양광 모듈의 음영에 따른 발전 저하에 영향을 주고 있다. 따라서 이러한 문제점을 개선하고자 본 논문에서는 1) 음영에 따른 태양광 모듈의 발전에 영향을 주지 않으면서 2) 태양광 모듈에서 반사되어 손실되는 태양에너지(일사량)를 회전하는 반사판을 이용하여 태양광 모듈에 다시 입사되는 방법을 연구 및 제안한다. 따라서 손실된 태양에너지(일사량)의 무수한 반사 각도에 따른 태양에너지를 재활용할 수 있는 방법을 통해 태양에너지(일사량)에 대한 손실을 최소화, 동일 일사량에 대한 발전량을 최대화하므로 태양광발전장치의 발전량을 증가시킬 수 있다.

사각튜브부착형 흡열판을 적용한 Unglazed PVT 복합모듈의 열적 전기적 성능분석 (The Experimental Performance of Rectangular Tube Absorber PV/Thermal Combined Collector Module)

  • 정선옥;천진아;김진희;김준태;조인수;남승백
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2011년도 추계학술발표대회 논문집
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    • pp.87-92
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    • 2011
  • The heat from PV modules should be removed for better electrical performance, and can be converted into useful thermal energy. A photovoltaic-thermal(PVT)module is a combination of PV module with a solar thermal collector which forms one device that converts solar radiation into electricity and heat simultaneously. The performance of the PV/Thermal combined collector module is directly influenced by solar radiation that also has an effect on PV module temperature. It is also has believe that the energy performance of PV/T collector is related to absorber design as well as PV module temperature. The existing study has been paid to the PV/Thermal combined collector module with circle tube absorbers. The aim of this study is to analyze the experimental performance of the PV/Thermal combined collector rectangular tube absorbers according to solar radiation. The experimental result show that the average thermal and electrical efficiencies of the PVT collector were 43% and14.81% respectively. Solar radiation is one of the most influential factors to determine the energy performance of PVT collector, but from a certain level of solar radiation the PVT collector receives on, its efficiencies began to decrease.

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표면냉각을 통한 PV 모듈의 출력 향상에 관한 연구 (Improving the power of PV module by a surface cooling system)

  • 김대현;김동준
    • 한국태양에너지학회 논문집
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    • 제29권6호
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    • pp.88-93
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    • 2009
  • This study was conducted to improve the power of PV module using a surface cooling system One of the unique characteristics of PV module is power drop as a module surface temperature increases due to the characteristics of crystalline silicon used in a solar cell. To overcome the output power reduction by temperature effect, module surface cooling using water circulation was performed. By cooling effect, module surface temperature drops maximally $20.3^{\circ}C$ predicting more than 10% power enhancement. Maximum deviation of voltage and current between a control and cooled module differed by 5.1 V and O.9A respectively. The maximum power enhancement by cooling system was 12.4% compared with a control module. In addition, cooling system can wash the module surface by water circulation so that extra power up of PV module can be achieved by removing particles on the surface which interfere solar radiation on the cells. Cooling system, besides, can reduce the maintenance cost and prevent accidents as a safety precaution while cleaning works. This system can be applied to the existing photovoltaic power generation facilities without any difficulties as well.

태양광 모듈 오염 방지를 위한 발수 코팅 물질에 대한 연구 (Research on Water-Repellent Coating Materials to Prevent Solar Module Pollution )

  • 박영아;정다연;기현철
    • 한국전기전자재료학회논문지
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    • 제37권2호
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    • pp.182-187
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    • 2024
  • Currently, the most developed new energy source is solar energy. Because solar power is installed outside, it is exposed to many pollutants. Pollutants are causing the characteristics of solar energy to deteriorate. Therefore, this study aims to develop a water-repellent coating to prevent contamination of solar modules. Silica and Titania materials are mainly used as water-repellent coating materials. In this study, it was based on silica and the contact angle characteristics were measured according to the change in the amount of silica and ammonia water added and the number of coatings. As a result of the measurement, it was confirmed that the contact angle was more than 60 degrees when 0.5 mol of TEOS was added to 50 mL and 0.15 M when 1 mL of ammonia water was added to 296.47 ml of distilled water. And it was confirmed that the contact angle improved when the number of coatings was applied twice. A water-repellent coating material was applied to low iron tempered glass used to protect dye-sensitized solar cell modules. The characteristics of the module were measured after spraying DI-Water on low-emission tempered glass with a water-repellent coating. As a result of the measurement, the efficiency of the module without application, the efficiency of the module coated once, and the module coated twice were 4.87%, 4.90%, and 4.91%, respectively. It was confirmed that the efficiency of the module increased by applying water-repellent coating. As a result of this study, it is determined that the water-repellent coating material will help improve solar power generation efficiency and lifespan by being self-cleaning and non-reflective.

재 제조 태양광모듈의 내구성능 평가 연구 (Durability Evaluation Study of Re-manufactured Photovoltaic Modules)

  • 김경수
    • Current Photovoltaic Research
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    • 제12권1호
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    • pp.17-23
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    • 2024
  • Photovoltaic (PV) power generation is the world's best and largest renewable energy that generates electricity with infinite sunlight. Solar cell modules are a component of photovoltaic power generation and must have a long-term durability of at least 25 years. The development of processes and equipment that can be recovered through the recycling of metals and valuable metals when the solar module's lifespan is over has been completed to the level of commercialization, but few processes have been developed that require repair due to initial defects. This is mainly due to the economic problems caused by remaking. However, if manufacturing processes such as repairing solar cell modules that have been proven to be early defects are established and the technical review of long-term reliability and durability reaches a certain level, it is considered that it will be a recommended process technology for environmental economics. In this paper, assuming that a defective solar cell module occurs artificially, a manufacturing process for replacement of solar cells was developed, and a technical verification of the manufacturing technology was conducted through long-term durability evaluation in accordance with KS C 8561. Through this, it was determined that remanufacturing technology for solar cell replacement of solar cell modules that occurred in a short period of time after installation was possible, and the research results were announced through a journal to commercialize solar modules using manufacturing technology in the solar market in the future.

태양전지 모듈의 구성 요소가 PID 발생에 미치는 영향 (The Effect of PID Generation by Components of the PV Module)

  • 김한별;정태희;강기환;장효식
    • 한국전기전자재료학회논문지
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    • 제26권10호
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    • pp.760-765
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    • 2013
  • PID (potential induced degradation) of PV module is the degradation of module due to the high potential difference between the front surface of solar cells and ground when PV modules operate under high humidity and temperature conditions. PID is generally derived from the positive sodium ions in front glass that are accumulated on P-type solar cells. Therefore, some papers for the electrical characteristic of only front components as glass, EVA sheet, solar cell under PID generation condition were revealed. In this paper, we analyzed the different outputs of module with PID by considering the all parts of module including the back side elements such as glass, back sheet. Mini modules with one solar cell were fabricated with the various parts on front and back sided of module. To generate PID of module in a short time, the all modules were applied.1,000 V in $85^{\circ}C$, 85% RH. The outputs, dark IV curves and EL images of all modules before and after experiments were also measured to confirm the main components of module for PID generation. From the measured results, the outputs of all modules with front glass were remarkably reduced and the performances of modules with back and front glass were greatly deteriorated. We suggest that the obtained data could be used to reduce the PID phenomenon of diverse modules such as conventional module and BIPV (building integrated photovoltaic) module.

BIPV를 위한 단축 구동 태양광 전력 발생장치 제작에 관한 연구 (A Study on the Manufacture of Single Axis Tracking Solar Power Generation System for BIPV)

  • 조재철;이진
    • 전기학회논문지
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    • 제61권2호
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    • pp.335-338
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    • 2012
  • Recently, the energy has been used much more than ever, but there has been many problems including atmospheric pollution. So we need alternative energy resources, which are solar heat, solar light, wind power, small water power, etc. The field, which is most popular these days, is the energy source by solar light which transform electric energy using the solar cell and it is available with many researches. In this paper, we manufactured the solar power generation system over 90W using solar module which was 9.90V for Voc, 0.93 A for Isc, 8.64 V for Vmp, 0.75 A for Imp, 6.5 W for power. System was controlled by step motor with worm gear to operate optimum condition between $0^{\circ}{\sim}70^{\circ}$ angle. This system was very effective in tracking space use because it need less space than general solar module.

백시트 종류에 따른 태양전지 모듈의 방열 특성 평가 (Evaluation of Heat Transfer Characteristics of PV Module with Different Backsheet)

  • 배수현;오원욱;강윤묵;이해석;김동환
    • Current Photovoltaic Research
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    • 제6권2호
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    • pp.39-42
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    • 2018
  • When the PV module is illuminated in a high temperature region, solar cells are also exposed to the high temperature external environment. The operating temperature of the solar cell inside the module is increased, which causes the power drops. Various efforts have been made to reduce the operating temperature and compensate the power of solar cells according to the outdoor temperature such as installing of a cooling system. Researches have been also reported to lower the operating temperature of solar cells by improving the heat dissipation properties of the backsheet. In this study, we conducted a test to measure the internal temperature of each module components and the external temperature when the light was irradiated according to the surrounding temperature. Backsheets with different thermal conductivities were compared in the test. Finally, in order to explain the temperature difference between the solar cell and the outside of the module, we proposed an evaluation method of the heat transfer characteristics of photovoltaic modules with different backsheet.

PV모듈에서 그림자에 의한 전기적 특성 (The Electrical Characteristics of Shading Effect in Photovoltaic Module)

  • 김승태;강기환;박지홍;안형근;유권종;한득영
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2008년도 춘계학술발표대회 논문집
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    • pp.257-262
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    • 2008
  • In this paper, we study the electric characteristics of shading effects in photovoltaic module in case of outdoor operation. When fabricating PV module, solar cells are connected serially to obtain the high voltage because of its low open circuit voltage. And total current is determined by lowest current among solar cells. When the shading happens on PV module's surface, the current of shaded solar cell determine the total current flow. Because of this, generally by-pass diode is installed on junction box. The bypass diode operate when revered and shaded solar cell's voltage is over 0.6 voltage. The reverse-biased solar cell gives reduced maximum power of PV module and might give negative effect on durability. So, adequate by-pass installation and selection is needed.

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