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Thermal Performance Evaluation of Junction Thermal Bridge according to Installation Position of Window

  • Lee, Soo-Man (Dept. of Architectural Engineering, graduate school, Daejeon Univ.) ;
  • Kim, Dong-Yun (Dept. of Architectural Engineering, graduate school, Daejeon Univ.) ;
  • Ahn, Jung-Hyuk (Eagon Windows & Doors Co. Ltd) ;
  • Eom, Jae-Yong (Eagon Windows & Doors Co. Ltd) ;
  • Shin, U-Cheul (Dept. of Architectural Engineering, graduate school, Daejeon Univ.)
  • Received : 2017.04.05
  • Accepted : 2017.06.02
  • Published : 2017.06.30

Abstract

Purpose: "Building energy design standard" is used to limit the thermal transmittance of building in Korea. However, it only covers the insulation standard for each appropriate elements of a building, not the thermal performance of Junction thermal bridge of windows and doors installed in wall. Therefore in this study, we have evaluated the thermal performance of Junction thermal bridge depending on installation method and position of windows and provide it as design data. Method: We analyzed heat transfer of 4-Track sliding window and tilt & turn triple glazed window that are placed in the first class category on window energy efficiency rating using Window 7.4 and Therm 7.4. Result : First, linear thermal transmittance of 4-Track sliding window differs by 2.2 times or more depending of installation method and location. It is higher than the linear thermal transmittance, 0.01W/mK, proposed by Passivhaus. Second, linear thermal transmittance of Tilt & turn triple glazed window differs by 7.7 times or more depending of installation method and location. The average linear thermal transmittance was less than 0.01W /mK when windows were installed on the internal wall insulation by the fixed hardware attachment method. Third, the thermal losses of a window caused by a junction thermal bridge are inversely proportional to the window area and converge gradually as the area increased.

Keywords

References

  1. The Government's Standard Assessment Procedure for Energy Rating of Dwellings 2016 edition
  2. Energie schweiz, Warmebruckenkatalog, SIA380/1
  3. DIN 4108 Beiblatt 2
  4. Passivhaus Institut, Criteria and Algorithms for Certified Passive House Components: Opaque construction systems, 2015
  5. Francesca Cappelletti, Anderea Gasparella, Piercarlo Romagnoni, Paolo Baggio, "Analysis of the influence of installation thermal bridges on windows performance: The case of clay block walls", Energy and Buildings, 2011.02
  6. Cristina Garcia Linera, Energy Efficient Window, Master's Thesis, Chalmers University of Technology, 2011
  7. ISO 10211-2:2001 Thermal bridges in building construction - Calculation of heat flows and surface temperatures - Part 2: Linear Thermal bridges

Cited by

  1. Thermal Bridging Effect of Window-Wall Junction in Apartment Buildings using Current Installation Method of Window to Wall vol.20, pp.5, 2020, https://doi.org/10.12813/kieae.2020.20.5.135