Daylighting Performance of Lightpipe under Different Sky Conditions

천공상태에 따른 수직형 광파이프 시스템의 채광성능 평가

  • Received : 2008.05.20
  • Accepted : 2008.06.20
  • Published : 2008.06.30

Abstract

The use of daylighting has been increased recently due to energy and visual comfort. The aims of interior daylighting are to adequately illuminate visual tasks, to create an attractive visual environment, and to save electrical energy. Lightpipe can improve the distribution of light to interior spaces. This study aims to evaluate the comparative daylighting performance of lightpipe under different sky conditions with mock-up model, sized $6m{\times}6m{\times}4m$ ($w{\times}d{\times}h$). For the purpose, perpendicular lightpipe system was designed as 650 diameter, with an aspect ratio of 2. Totally 49 measuring points of and two of outdoor illuminance on the horizontal plane were monitored from 09:00 to 18:30 on April 29 and May 15 2008. Agilent data logger and photometric sensor were used. Light factor were used to analyse daylight performance under different sky condition. Under overcast sky condition and clear sky condition, the lightpipe system is suitable for KS recommendation level of illuminance.

Keywords

References

  1. 김정태 외 5명, "광 파이프 시스템의 채광성능 평가", 대한건축학회 논문집, 제17권 제4호, pp. 119-124, 2001.04
  2. 김정태 외 4명, "반사거울형 태양광 채광시스템의 개발에 관한 연구", 대한건축학회 논문집, 제18권 제6호, pp. 109-116 2002.06
  3. 신혜미, 박훈, 김정태, "수직형 라이트파이프의 채광성능에 관한 예비평가", 한국생태환경건축학회 논문집, 제8권 제1호, pp. 53-60, 2008.02
  4. 이경회, "건축환경계획", 문운당, pp. 317-469, 2007
  5. D. Jenkis, T. Munner, "Modelling light-pipe performance - a natural daylighting solution", Building and Environment, Vol. 38, pp. 965-972, 2003 https://doi.org/10.1016/S0360-1323(03)00061-1
  6. G. Oakley, S. B. Riffat and L. Shao, "Daylighting Performance of Lightpipes", Solar Energy, Vol. 69, No. 2, pp. 89-98, 2000 https://doi.org/10.1016/S0038-092X(00)00049-9
  7. IEA SHC Task 21, "Daylighting in Buildings", ECBCS Annex 29, 2000.06
  8. M. Paroncini, B. Calcagni, F. Corvaro, "Monitoring of a light-pipe system", Solar Energy, Vol. 81 pp. 1180-1186, 2007 https://doi.org/10.1016/j.solener.2007.02.003
  9. S. Szokolay, "Enrivonmental Science Handbook for Architects and Buildings, pp. 91, 1979
  10. http://www.solarspot.it/it/
  11. http://www.whilkor.com/