열관류율[Uf] 1.0 W/m2·K 이하 커튼월 프레임 개발을 위한 부품 항목 및 성능 영향 연구
A Study on the Thermal Performance Factors and Effects of Each Part of Curtain Wall Frame for Development of Curtain Wall Frame with Thermal Conductivity 1.0 W/m2·K or Less
박혜영(패시브제로에너지건축연구소); 박성중(사단법인 패시브제로에너지건축연구소)
14권 5호, 484~496쪽
초록
Compared to overseas curtain wall products, domestic curtain wall products have a negative thermal performance. To develop curtain wall frame with thermal conductivity 1.0 W/m2 ·K or less, it is importance to figure out the thermal performance factors and effects of each part or curtain wall frame. In this work, thermal performance factors such as form and material were classified on 6 parts; aluminium part, gasket, thermal break bar, gasket for setting wimdow, aluminium cover and screw. The thermal performance effect of each part were also calculated according to ISO 12631 and the results were present as a thermal performance improvement rate with in range from the lowest curtain wall thermal transmittance to the highest. The results show that it is thermal break bar which has greatest effect on improving the thermal performance of curtain wall, especially with soft PE foam.
Abstract
Compared to overseas curtain wall products, domestic curtain wall products have a negative thermal performance. To develop curtain wall frame with thermal conductivity 1.0 W/m2 ·K or less, it is importance to figure out the thermal performance factors and effects of each part or curtain wall frame. In this work, thermal performance factors such as form and material were classified on 6 parts; aluminium part, gasket, thermal break bar, gasket for setting wimdow, aluminium cover and screw. The thermal performance effect of each part were also calculated according to ISO 12631 and the results were present as a thermal performance improvement rate with in range from the lowest curtain wall thermal transmittance to the highest. The results show that it is thermal break bar which has greatest effect on improving the thermal performance of curtain wall, especially with soft PE foam.
- 발행기관:
- 한국건축친환경설비학회
- 분류:
- 건물에너지