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A Study on Computer Simulation to Investigate Correlations between Temperature Controlling Effect of Green Roof System and the Photovoltaic Power Generation Efficiency

옥상녹화시스템의 기온조절효과와 태양광발전효율간의 상호연관성 규명을 위한 전산해석연구

  • Kim, Tae Han (Dept. of Enviornmental Landscape Architecture, Sang Myung University) ;
  • Park, Sung Eun (Life Style Faculty, KayWon School of Art & Design)
  • 김태한 (상명대학교 환경조경학과) ;
  • 박성은 (계원예술대학교 라이프스타일군)
  • Received : 2013.05.03
  • Accepted : 2013.07.23
  • Published : 2013.08.30

Abstract

These day cities experience serious climatic changes due to environmental load caused by disturbance in the circulation systems of water resources and energy. As technological improvement to respond to various climatic changes and disasters are also requested in the field of construction, inter-disciplinary studies linked to the establishment of sustainable environmental control and energy systems is required in a consilient perspective. This study aims to infer correlations in the impact of environmental changes caused by rooftop greening system on the photovoltaic power generation efficiency through computer simulation in an integrated perspective. By doing so, it seeks to provide basic study for developing a photovoltaic system integrated with building revegetation that is sustainable in environmental and resource aspects. A simulation showed that, in the case of sunshine hours in June, the green surface indicated temperature lowering effects of $9.19^{\circ}C$ on average compared to the non-green surface and temperature was $9.81^{\circ}C$ lower. Due to such greening effects, at the highest sunlight timepoint in June, Pmpp improved 119W and heat loss rate dropped 7.8%.

Keywords

References

  1. Han S.W, Kim H.S, LEE D.W, Evaluation of IAQ in School Classroom according to the Building Material and Ventilation Rate Planning Korea institute of architectural sustainable Environment and building systems Proceedings of the Conference. PP 235-239.
  2. Choi H.K., Choi S.G., Choi D.W., Lee G.M., Summeer, A Study on Characteristic by Photovoltaic Module by Climate Fluctuation. Journal of the Korean Institute of Illuminating and Electrical Installation Engineers., Vol. 23, No, 12, pp.75-82.2009 https://doi.org/10.5207/JIEIE.2009.23.12.075
  3. Yoo D.C, Lee. E.J., A study on the effect that the green roof has on the performance of PV module. Korea solar energy society, Vol. 32, No. 2, PP 113-119. https://doi.org/10.7836/kses.2012.32.2.113
  4. Frankenstein, S., and G. Koenig. FASST (Fast All Season Soil Strength) Vegetation Models. U.S. Army Engineer Research and Development Center, Coldregions Research and Engineering Laboratory, ERDC/CRREL Technical Report TR-04-25. 2004.
  5. De Paepe M., 3D unstructured finite volume technique for modelling earth air heat exchangers., Advanced Computational Methods in Heat Transfer, 2002, ISBN 1-85312-906-2
  6. Kim T.H., A study on thermal simulation for extensive green roof system using a plant canopy model. The Korea Society For Environmental Restoration And Revegetation Technology. Korea. Vol.15, No.2, PP137-146, 2012 https://doi.org/10.13087/kosert.2012.15.2.137
  7. Gauthier C, Lacroix M, Bernier H. Numerical simulation of soil heat exchanger-storage systems for greenhouses. Solar Energy Vol. 60, No. 6 pp.333-346, 1997 https://doi.org/10.1016/S0038-092X(97)00022-4
  8. Mihalakakou G., Santamouris, M., Lewis, J., Asimakopoulos D., On the application of the energy balance equation to predict ground temperature profiles., Solar Energy, Vol. 60, No. 3/4 pp.181-190, 1997 https://doi.org/10.1016/S0038-092X(97)00012-1
  9. http://naturalfrequency.com/wiki/insolation.
  10. University of Geneva. User's Guide PVsyst Contextual Help, 1994-2010.
  11. Mostrel M. and Givoni B. Windscreens in radiant cooling. Passive Solar J. 1, 229, 1982
  12. $RETScreen{(R)}$ International, Photovoltaic Project Analysis Chapter, Natural Resources Canada

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