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Solar Access and Shading Analysis of Traditional Building Using a Solar Trajectory Meter

태양 궤적 측정기를 이용한 전통 건축물 음영 분석

  • Kim, Myoung Nam (Restoration Technology Division, National Research Institute of Cultural Heritage) ;
  • Park, Ji Hee (Restoration Technology Division, National Research Institute of Cultural Heritage)
  • 김명남 (국립문화재연구소 복원기술연구실) ;
  • 박지희 (국립문화재연구소 복원기술연구실)
  • Received : 2020.12.02
  • Accepted : 2021.01.26
  • Published : 2021.04.30

Abstract

Outdoor cultural buildings and their accessories receive different amounts of solar radiation depending on their location's latitude, azimuth, and tilt. Shading is also affected by the surrounding terrain and objects, necessitating individual and quantitative shading analysis. In July 2019, this study conducted a shading analysis on the tops, midpoints, and bottoms of wooden pillars in the azimuth of Cheongpunggak, a traditional building in South Korea's National Research Institute of Cultural Heritage. The shading analysis found that the solar access/shade predicted by the solar trajectory meter was 30 minutes slower than measured in the field. The highest solar access and solar radiation levels came from the south, followed by the west, east, and north. The pillars' bases received the highest solar access and solar radiation, followed by their midpoints and tops. Solar access was high at tilt 90°, but solar radiation was high at tilt 0°, due to the light-collection efficiency and the irradiance. Shading on the pillars' tops was caused by the roof eaves, while shading on the midpoints and bases were affected by the surrounding pillars, topography, and other objects. Simultaneous solar access at the tops, midpoints, and bottoms was possible for 365 days for the northwest, west, and southwest pillars but only from October to March for the south and southeast pillars.

야외 문화재와 그 부재는 위도, 방위각, 경사각에 따라 태양으로부터의 일사량이 다르고 주변의 지형, 지물에 의해 추가 음영이 발생하므로 개별적이고 정량적인 음영 분석이 요구된다. 본 연구는 2019년 7월에 국립문화재연구소 내 전통 건축물인 청풍각의 방위별 목재 기둥 상부, 중부, 하부 지점을 대상으로 태양 궤적 측정기를 이용한 음영 분석을 수행하였다. 음영 분석 결과, 태양 궤적 측정기의 시각별 일사/음영 예측은 실제 현장에서의 시각별 일사/음영에 30분 오차로 일치하였다. 목재 기둥의 방위별 일조율과 일사량은 남향이 가장 높고, 서향, 동향, 북향 순으로 높았으며 측정 위치별 일조율과 일사량은 하부가 가장 높고 중부, 상부 순으로 높았다. 일조율은 경사각 90°가 높았으나 일사량은 수광 효율과 일사 세기에 기인하여 경사각 0°가 높았다. 상부 지점은 지붕 처마, 중부와 하부 지점은 주변 목재 기둥, 주변 지형과 지물에 의한 음영 장애 영향이 컸다. 상부, 중부, 하부 지점에 대한 동시 일사는 북서 측, 서 측, 남서 측 기둥에서는 365일 가능하였고 남 측, 남동 측 기둥에서는 10월부터 3월까지 기간만 가능한 것으로 나타났다.

Keywords

Acknowledgement

이 연구는 2019년도 문화재청 국립문화재연구소 문화 유산 조사연구(R&D) 사업의 지원을 받아 이루어졌으며 행정적 및 재정적 지원에 깊이 감사한다.

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