• Title/Summary/Keyword: 태양열 제어

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Study on Solar Tracker Control Method using AC Motor and CdS Sensor (AC 모터 및 CdS 센서를 이용한 태양 추적 장치 제어 방법에 관한 연구)

  • Kim, Bo-Heon;Kim, Hwang-Rae
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.11
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    • pp.294-301
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    • 2016
  • Recently, the solar tracker has been used to improve the efficiency of solar energy. Solar tracking technologies are classified into the sensor-based method, the program-based method, and the hybrid method. Solar trackers using an AC motor and CdS sensor are low in cost, but the precision of the positions is low, owing to the inertia of the motor and the scattering of sunlight. To compensate for the low precision, we implement a CdS sensor module and propose an AC motor control method using error value. To evaluate the performance of the solar tracker, we implemented a solar water heater. From the experimental results, the solar tracker can achieve ${\pm}2mm$ accuracy for sun, can satisfy ${\pm}15mm$ as a limited error value, and provides a 32% performance enhancement in KSB8202 criteria.

Development of Antifreeze Concentration Control device for Solar Heat Energy System (태양열에너지 시스템용 부동액 농도 제어 장치의 개발)

  • Seo, Choong-Kil;Won, Joung Wun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.4
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    • pp.1-7
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    • 2018
  • The gases emitted from internal combustion engines using fossil fuels are causing many social problems, such as environmental pollution, global warming, and adverse health effects on the human body. In recent years, the demand for renewable energy has increased, and government policy support and research and development are also active. In the collecting part of a solar energy system, which is widely used at home, propylene glycol (PG) (anti-freeze), as a heating medium, is mixed with water at a fixed value of 50%, and the heat is transferred to the collecting part at subzero temperatures. On the other hand, when leakage occurs in the heat medium in the heat collecting part, supplemental water is supplied to the solar heat collecting part due to the characteristics of the solar heat system, so that the concentration of antifreeze in the replenishing water becomes low. As a result, the temperature of the solar heat collecting part is lowered resulting in a frost wave, which causes economic damage. The purpose of this study was to develop a device capable of controlling the antifreeze concentration automatically in response to a temperature drop to prevent freezing of the heat collecting part generated in the solar energy system. The electrical conductivity of the H2O component was larger than that of PG, and the resistance increased with decreasing temperature. The PG concentration control values of 40, 50, and 60% should be controlled through calibration with a PG concentration of 39.6, 50.7, and 60.1%.

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

  • Lee, Ho;Joo, Hong-Jin;Kim, Sang-Jin;Kwak, Hee-Yeol
    • 한국태양에너지학회:학술대회논문집
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    • 2008.11a
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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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Thermal Performance of Solar Thermal System by On-Off Differential Temperature of Differential Temperature Controller (차온제어기의 On-Off 온도설정에 따른 태양열 시스템 열성능)

  • Shin, U-Cheul;Baek, Nam-Choon
    • Journal of the Korean Solar Energy Society
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    • v.25 no.2
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    • pp.1-8
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    • 2005
  • On-off differential controller is one of the very important components which affect the system performance of the active solar thermal system. In this study, analyses were made regarding the influence of "on-off" setting temperature on the system efficiency and on the electrical consumption by circulation pump. This study was performed by experiment as well as the computer simulation using TRNSYS program. The simulation system was developed in this study was verified the its reliability by the experimental results. As a results, the turn off temperature(${\Delta}T_{off}$) is much more influence than the turn on temperature(${\Delta}T_{on}$) on the system efficiency. It is more clear and sensitivity in winter season. Finally the optimum on-off setting value and the system on-off pattern according to the several different kind of system was also represented.

"ESCO 전문 시공사 (주)동서기연이 건축의 패러다임을 바꾸겠습니다"

  • 에너지절약전문기업협회
    • The Magazine for Energy Service Companies
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    • s.58
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    • pp.34-37
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    • 2009
  • '안전시공, 완벽시공, 고객만족'의 슬로건으로 ESCO를 말하는 기업이 있다. 대구에 위치한 (주)동서 기연은 소형열병합발전시스템, 바이오매스(우드칩, 바이오탄)보일러, 열회수환기장치, 태양열, 지열, 시스템냉난방기, 통합자동제어시스템, 진공청소시스템 등 기술력을 보유하고 전문 시공 업체로 전문성을 인정받았다. '더 싼 가격으로 더 큰 효율'을 위한 에너지 신기술로 에너지 분야에서 지속적으로 성정하고 있는 동서기연을 소개한다.

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Exergy Analysis of Solar Collector for Solar Heated Greenhouse Design (태양열온실의 설계를 위한 집열기의 EXERGY 분석)

  • 이석건
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1993.05a
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    • pp.18-19
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    • 1993
  • 지상의 기상환경조절이 불가능한 노지재배는 생산의 불안정요인이 대부분 기후조건으로 부터 기인된다. 반면에 시설원예는 피복재를 이용하여 격리된 공간을 만들고 그 속에 태양에너지를 저장하고 이를 제어하여 작물의 생육에 적절한 온실환경을 조성하는 수단이며 밀폐된 공간은 외부와 격리되어 있기 때문에 열 및 물질의 전달이 억제되므로 필요한 경우에는 열, $CO_2$, 습도 및 공기의 이동 등 보조에너지의 투입이 가능하므로 보다 적절한 지상환경조건을 조성할 수 있다. (중략)

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THE ORBITAL THERMAL ANALYSIS OF HAUSAT-2 AND ITS THERMAL CONTROL SUBSYSTEM PRELIMINARY DESIGN (HAUSAT-2의 궤도 열해석과 열제어계의 예비설계)

  • Lee Mi-Hyeon;Kim Dong-Woon;Chang Young-Keun
    • Bulletin of the Korean Space Science Society
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    • 2005.04a
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    • pp.129-132
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    • 2005
  • This paper describes BAUSAT-2 orbital thermal analysis and preliminary design of thermal control subsystem. To design thermal control subsystem of HAUSAT-2, we have considered active & passive thermal control method based on basic theory and themal equilibrium equation. Using this result, suitable thermal control method and material have been selected. We have designed thermal control subsystem based on analysis of HAUSAT-2's thermal environments on sun synchronous orbit with altitude 650km, inclination $98^{\circ}$ and thermal distribution and range expectation of each HAUSAT-2's surface. Thermal analysis consists of system level, box level and board level analysis. We have completed system level and box level analysis. Till now, board level analysis of main heat dissipation board in progress. Thermal control subsystem has designed according to thermal analysis result. This design is to maintain all of the HAUSAT-2 components within the allowable temperature limits. In future, STM

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Design of thermal system using 3-way valve and PTC to which a solar module (태양광 모듈이 부착된 PTC 집열기 및 3웨이 밸브를 이용한 온열 시스템 설계)

  • Song, Je-Ho;Lee, In-Sang;Lee, You-Yub
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.1
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    • pp.454-459
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    • 2017
  • In this study, a thermal system was designed using a 3-way valve and PTC attached to a solar module. This design could help solve the problem of rising fossil fuel costs caused by limited reserves and environmental problems resulting from fossil fuel use. The thermal system is a hot-air and heating control system composed of a temperature sensor part, mode setting part (for hot air and heating modes), supply part, and thermal system control part. The temperature sensor part has piping and an indoor temperature display, and the temperature setting part has multiple monitoring functions. The mode setting part switches between hot air and heating modes and can be used to set the temperature. The thermal system control part performs functions such as PTC control and temperature setting, PTC day and night and time selection, hot air and heating control, and three-way valve selection. The results verify that the system operates with stable response speeds of $680{\mu}s$ in the temperature sensor part, $700{\mu}s$ in the mode setting part, and $610{\mu}s$ in the thermal system control part.

Solar District Heating System (지역난방용 태양열시스템)

  • Baek, Nam-Choon;Lee, Jin-Kook;Yoon, Eung-Sang;Yoon, Suk-Man;Sin, U-Chul
    • Proceedings of the SAREK Conference
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    • 2008.06a
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    • pp.663-668
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    • 2008
  • This study was carried out solar heating system design for district heating and it's the performance analysis by experiment. This experimental system was installed in Bundang district heating area in the end of 2006. The flat plate and vacuum tube solar collector are combined in one system. So district heating water is heated first by flat plate solar collector and than by vacuum tube solar collector. This solar heating system has not a solar buffer tank and is operating with variable flow rate to obtain a setting temperature of $90{\sim}95^{\circ}C$. As a result, the daily solar thermal collection efficiency is about 30 to 40% for the plate type and 50 to 55% for the vacuum tube solar collector. It varied especially depend on the weather condition like as solar radiation and ambient temperature. This variable flow rate system can be also reduced much pumping power more than 50%.

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Design and Implementation of Automatic Control System in Room using Sensor (센서를 이용한 자동 실내 온도 제어시스템 설계 및 구현)

  • Jeong, Gyu-Tae;Lee, Eun-Jin;Kim, Heung-Soo
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.05a
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    • pp.326-328
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    • 2015
  • Function of the window of the building is an environment of the room through the entry of solar radiation. It is vulnerable to significant energy conservation off the thermal efficiency. Also this summer, cooling costs are weighted because of excessive solar radiation. In this paper, we develop a windows automatic control system to use the indoor environmental information, such as home temperature, humidity, light intensity, solar radiation. The system collects the indoor environment information using a variety of sensor, using the collected information, and controls the motor to the system to control the window.

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