• Title/Summary/Keyword: 일사해석

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A simulation model for the analysis of direct and diffuse solar radiation in glasshouse - Effect of orientation on the transmissivity of direct solar radiation in glasshouse - (유리온실내의 직달일사 및 산란일사 해석을 위한 시뮬레이션 모형 개발 - 동방위가 온실내의 직달일사 투과도에 미치는 영향 -)

  • 김용현;이석건
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1997.11a
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    • pp.1-7
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    • 1997
  • 온실이란 식물 생육에 요구되는 태양광을 유용하게 활용하기 위하여 투명한 피복재가 사용된 구조물을 일컫는다. 온실내로 투과되는 일사량은 온실이 설치된 지역의 위도, 온실의 동방위 및 형상, 구조물의 재원, 피복재의 광학적 특성, 년중일수, 기상 조건, 지붕면의 경사각 등에 따라 변화된다. 일반적으로 겨울철에 온실내의 일사량은 식물의 정상적인 생육에 제약이 되는 요소로 작용한다. (중략)

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Study of The Performance Analysis of a Solar Power Utility with 1.3MW (1.3MW급 태양광 발전소 성능 분석에 관한 연구)

  • Park, Jaegyun;Yun, Jungnam;Lee, Somi;Yun, Kyungshick
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.71.1-71.1
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    • 2010
  • 본 연구는 1.3 MW급 태양광 발전소에서 기온 및 일사량에 따른 발전성능이 유지 보수 및 사후관리에 따라 성능이 향상될 수 있음을 실측자료를 통해 입증하는데 목적이 있다. 실측자료는 2008년 5월 전북 부안에 설치된 태양광 발전소에서 측정된 기온 및 일사량에 따른 발전량을 이용하였으며, 측정기간은 2009년 1월~2009년 12월까지 1년간 모니터링을 한 데이터를 기반으로 분석하였고, 발전소 성능 지표인 PR(Performance Ratio)을 계산하여 자료로 활용하였다. 또한, 실측자료는 PVSYST를 이용하여 실측자료와 동일한 조건에서 예측된 시뮬레이션 발전량 및 PR값과 비교 분석하였다. 실측자료와 해석결과의 비교에서 월단위로 측정된 실측 발전량과 예측 발전량은 유사한 경향을 나타냈으며, 실측 발전량은 예측 발전량 대비 약 5% 낮게 나타났다. 또한, 실측 PR값은 예측 PR값보다 약 4.97% 높게 나타났는데, 이는 해석을 위해 적용되는 일사량(기상청)과 실측 일사량이 다르고, Team Function 방식으로 구동되는 인버터와 시뮬레이션에서의 인버터 구동방식의 차이 때문인 것으로 판단된다. 한편, 일조량의 증가에 따른 1.3MW급 태양광 발전소의 발전량은 비례적으로 증가하는 경향을 나타냈으며, 7월의 경우 기후특성으로 인하여 국부적으로 감소하는 특성을 나타낸다.

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Analysis of the Transmissivities of Direct and Diffuse Solar Radiation in Multispan Glasshouse (연동 유리온실내의 직달일사 및 산란일사 투과율 해석)

  • 김용현;이석건
    • Journal of Biosystems Engineering
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    • v.23 no.5
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    • pp.439-444
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    • 1998
  • Effects of the number of spans, orientation and latitude on the transmissivities of direct and diffuse solar radiation in multispan glasshouse were analyzed using a computer simulation model (Kim and Lee, 1997). The number of spans did not affect the transmissivity of diffuse solar radiation, ranging 60∼61%. The transmissivities of direct solar radiation were 55∼64% for E-W orientation and 47∼70% for N-S orientation in ten multispan glasshouse. There was no effect of the latitude on the transmissivity of direct solar radiation in domestic regions. Differences in the transmissivity of direct solar radiation between single-span and multispan glasshouse were significant for E-W orientation during winter season; however, those were relatively small for N-S orientation throughout the year. Transmissivity of direct solar radiation decreased with the increasing number of spans for E-W glasshouse, whereas those for N-S glasshouse was hardly affected by the number of spans.

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Effect of roof slope on the transmissivities of direct and diffuse solar radiation in multispan glasshouse by a computer simulation (컴퓨터 시뮬레이션에 의한 연동 유리온실내의 직달일사 및 산란일사 투과율에 미치는 지붕경사각의 영향)

  • 이석건;김용현
    • Journal of Bio-Environment Control
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    • v.7 no.4
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    • pp.324-329
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    • 1998
  • Effect of roof slope on the transmissivities of direct and diffuse solar radiation using a computer simulation model developed by Kim and Lee(1997) was analyzed for 10-span glasshouse located in Seoul(37$^{\circ}$34' N), Chonju(35$^{\circ}$49' N) and Cheju(33$^{\circ}$31' N). Transmissivities of diffuse solar radiation in glasshouse with roof slopes of 15, 20, 24.6, 30 and 35 degree were calculated as 61.3, 61.6, 61.7, 56.8 and 58.6%, respectively. Transmissivities of direct solar radiation(TDSR) during the period except summer season were highly affected by the roof slope. During the winter season, TDSR in glasshouse with roof slopes of 30 and 35 degree were higher than those with other roof slopes. Also, during the period except winter season, TDSR in glasshouse with roof slope of 20 degree were higher than those with other roof slopes. Difference in TDSR with latitude was significant during the period from October to February. At this period TDSR were highly appeared at lower latitude. Effect of roof slope on TDSR in S-N greenhouse was smaller than those in E-W greenhouse. It is considered that direct solar radiation highly transmitted in the glasshouse with roof slope of 20 degree.

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A Simulation Model for the Analysis of Direct and Diffuse Solar Radiation in Glasshouse - Effect of orientation on the transmissivity of direct solar radiation in single- span glasshouse - (유리온실내의 직달일사 또 산란일사 해석을 위한 시뮬레이션 모형 - 동방위가 단동 온실내의 직달일사 투과율에 미치는 영향 -)

  • 김용현;이석건
    • Journal of Bio-Environment Control
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    • v.6 no.3
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    • pp.176-182
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    • 1997
  • A simulation model for the analysis of the transmissivity of direct and diffuse solar radiation In glasshouse was developed. This model would be applicable to investigate the influences of time of year, orientation and slope of glasshouse, dimensions of the frames used, and latitude of the site on the transmissivity of direct and diffuse solar radiation in single-span or multispan glasshouse. The transmissivity of diffuse solar radiation was 60.4% for the single-span glass-house. It was independent of both orientation and time of year, During the winter season, the transmissivity of direct solar radiation was 67~69% for the E-W orientation single-span glasshouse, which was 14~16% higher than that for the S-N orientation. Oppositely the transmissivity of direct solar radiation for the S-N orientation was higher than that for the E-W orientation. during the autumn season. There was no influence of the latitude In the country on the transmissivity of direct solar radiation.

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The Prediction of Temperature in Composite Box Girder Bridges (합성 박스형 교량의 온도 예측)

  • Chang, Sung Pil;Im, Chang Kyun
    • Journal of Korean Society of Steel Construction
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    • v.9 no.3 s.32
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    • pp.431-440
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    • 1997
  • The paper describes a theoretical model for the prediction of bridge temperatures from meteorological data measured at bridge site and local meteorological center together with existing finite element heat transfer theory and solar radiation transfer theory to determine the time dependent temperature distribution of bridge. In this analytical model, the most adequate equation for the calculation of solar radiation on the bridge surface, which is dominant in day time is described based on the results of several experimental studies for the solar energy. The validity of this model is tested against field data obtained from long term experimental program on Sadang Viaduct in Seoul. Also, this paper describes the linear correlation between design variables and meteorological data to establish analytical criteria for the prediction of the average temperature, which are responsible for the longitudinal deformation of the bridges and of the vertical differential temperature profiles. which are responsible for the bending deformations from the long term experimental results.

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A Temperature Predicting Method for Thermal Behaviour Analysis of Curved Steel Box Girder Bridges (곡선 강박스거더교의 온도거동 분석을 위한 온도분포 예측기법에 관한 연구)

  • Cho, Kwang-Il;Won, Jeong-Hun;Kim, Sang-Hyo;Lu, Yung-Chien
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.1A
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    • pp.105-113
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    • 2008
  • Solar radiation induces non-uniform temperature distribution in the bridge structure depending on the shape of the structure and shadows cast on it. Especially in the case of curved steel box girder bridges, non-uniform temperature distribution caused by solar radiation may lead to unusual load effects enough to damage the support or even topple the whole curved bridge structure if not designed properly. At present, it is very difficult to design bridges in relation to solar radiation because it is not known exactly how varying temperature distribution affects bridges; at least not specific enough for adoption in design. Standard regulations related to this matter are likewise not complete. In this study, the thermal behavior of curved steel box girder bridges is analyzed while taking the solar radiation effect into consideration. For the analysis, a method of predicting the 3-dimensional temperature distribution of curved bridges was developed. It uses a theoretical solar radiation energy equation together with a commercial FEM program. The behavior of the curved steel box girder bridges was examined using the developed method, while taking into consideration the diverse range of bridge azimuth angles and radii. This study also provides reference data for the thermal design of curved steel box girder bridges under solar radiation, which can be used to develop design guidelines.

ICAP/4, Magnetics Designer, Solar Pro (다한테크의 시뮬레이션 툴 소개)

  • Mun, Yeong-Je
    • KIPE Magazine
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    • v.13 no.4
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    • pp.28-32
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    • 2008
  • Power Supply Designer는 부품설계, large-sign -al 시뮬레이션, feedback control design 그리고 소신호 해석 등 완전한 스위칭 전원공급장치(SMPS)의 설계를 위한 시뮬레이션 프로그램입니다. 또한 최종 정확도 모델링 기술을 사용한 전류-모드 시뮬레이션, CCM & DCM 컨버터 시뮬레이션, loop gain이 포함된 컨트롤 시스템의 해석, 필터 디자인 및 해석, 모든 주요 부품에 대한 파워손실 측정 및 스트레스 해석을 하기 위한 빠르고 순환적인 시뮬레이션과 시뮬레이션시 자주 발생하는 Convergence 에러를 최소화할 수 있는 Convergence 마법사 기능을 수행할 수 있습니다. Power Supply Designer는 ICAP/4 Power Delu -xe라는 시뮬레이터와 인덕터 및 트랜스포머를 설계할 수 있는 Magenetics Designer가 패키지로 구성이 되어 있는 제품입니다. Solar Pro는 일사량, 온도, 각 지역의 위치정보에 대한 데이터와 태양광모듈에 대한 데이터를 고려하여 그림자 분석, I-V계산, 발전량계산, 경제성분석을 제공하는 솔루션입니다. 또한 그림자의 궤적과 발전량을 계산하여 애니메이션으로 볼 수가 있고 경제성을 포함한 시스템 성능을 표시할 수 있기 때문에 태양광 설치 고객에게 태양광 발전 시스템 자체에 대한 이해와 설득력 있는 프리젠테이션을 할 수가 있습니다.

Analysis of New Solar Cell Model for the Virtual Implemented Solar Cell System (가상구현 태양전지 시스템을 위한 태양전지의 새로운 모델링)

  • Jeong, Byung-Hwan;Kang, Byoung-Hee;Lee, Myung-Un;Choe, Gyu-Ha
    • The Transactions of the Korean Institute of Power Electronics
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    • v.11 no.1
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    • pp.79-89
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    • 2006
  • Particularly the photovoltaic systems are preferred because the output is extracted to the useful electric energy. However, the output characteristics of photovoltaic(PV) systems using solar cell or array depend on the weather conditions. The assistant equipment which emulates the solar cell characteristics that can be controlled arbitrarily by researcher is required to the researchers for reliable experimental data. To solve these problems, it is necessary to research a solar cell model of which output characteristics varied by setting the weather conditions such as insolation levels and temperatures. Therefore, this paper was presented that improved model which is based on interpolation model. To verified the improved model, it is confirmed using the simulation of MATLAB. Also, the experiment was performed by the characteristics of virtual implemented solar cell(VISC) system with the proposed solar cell model. It could be confirmed that there exists actual ewer within 5% between actual solar cell and VISC system.