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A Study on the Evaluation of Thermal Transmittance Performance of Aluminum Alloy Window Frame of Educational Facility considering 2 Dimensional Steady-state Heat Transfer

2차원 정상상태 전열해석을 통한 교육시설의 알루미늄 창호 열관류율 평가에 관한 연구

  • Park, Tong-So (Department of Architectural Engineering, Hanseo University)
  • Received : 2011.09.01
  • Accepted : 2011.11.10
  • Published : 2011.11.30

Abstract

This study focused to evaluate thermal transmittance(U-value) performance of sliding type of aluminum alloy window frame(AAWF) with double glazing(DG) and glazing spacer and that without thermal breaker in winter and summer season by two dimensional steady state heat transfer analysis. The AAWE was installed to an existing educational facilities in Seosan area which is the southern region of the Korean Peninsula. Analysis of 2D steady-state heat transfer was performed through the use of BISCO as calculation and simulation program. U-value and temperature factors were calculated. The results are as followed. First, the isotherm simulation shows that AAWF with double glazing have serious differences from recently proposed window thermal performance standards such as Insulation Performance of Windows and Doors of Building Energy Saving Design Standards and the results of calculation of thermal transmittance performance of AAWF and DG are U=9.631 W/$m^2K$, U=2.382 W/$m^2K$ respectively during winter and summer season. Second, the results of analysis of heat transfer analysis, calculated by simulation, shows that 225% of heat is lost comparing with thermal performance standards U=4.0 W/$m^2K$ of general double glazing among those standards on AAWF without thermal breaker.

본 연구에서는 대학 캠퍼스의 기존 교육시설에 설치된 알루미늄 합금 창의 2차원 정상상태 전열해석을 통한 열관류율(U-value) 평가를 수행하였다. 교육시설의 주요 창호 재료로 적용된 알루미늄은 열전도율이 175 $kca{\ell}/m^2h^{\circ}C$ 정도로 플라스틱 소재의 창틀과 비교할 때, 매우 불리하여 기존 교육시설에 설치된 알루미늄 창호는 열교를 통한 열손실의 주요인으로 지적되고 있다. 본 연구에서는 이러한 점에 착안하여 충남 서산지방에 위치한 대학건물의 알루미늄 알로이 합금 창호의 열관류율 평가에 관한 연구를 수행하여 다음의 해석 결과를 도출하였다. (1) 2차원 정상상태 전열해석을 위한 경계조건은 국토해양부고시 건축물 에너지절약설계기준의 남부지방 냉난방장치의 용량계산을 위한 설계 외기온 기준과 실내온도 기준을 적용하여 여름철 실내 $27^{\circ}C$, 실외 $31.3^{\circ}C$, 겨울철 실내 $21.0^{\circ}C$, 실외 $-9.6^{\circ}C$ 로 설정하고 시물레이션을 통한 해석 결과 열관류율은 알루미늄 합금 창호 U= 9.631 W/$m^2K$, 복층유리 U= 2.382 W/$m^2K$로 여름철과 겨울철 동일한 해석 결과치가 산출되었다. (2) 열관류율 해석결과를 "건축물의 에너지절약설계기준"의 열교차단재가 적용되지 않은 금속제 창의 단열성능 중 일반 복층창 단열성능기준인 U=4.0 W/$m^2K$와 비교할 때, 알루미늄 창틀을 통하여 225%의 열손실이 발생됨을 보여 주고 있다.

Keywords

References

  1. Building Regulation of Building Services, Code of Ministry of Land & Maritime, Vol. 306, 2010.11. 5
  2. Building Regulation of Building Services, Code of Ministry of Land & Maritime, Vol. 2008-5 [Appendix 3] Insulation Performance of Window & Door.
  3. Standard of Building Energy Saving Design, Code of Ministry of Land & Maritime, Vol. 2010-1031.
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  6. EN ISO 10077-2: Thermal Performance of Windows, Doors and Shutters
  7. EN ISO 10211, ISO 13788: Thermal Bridge Analysis: Heat Loss Calculation, Surface Condensation
  8. EN ISO 6946: Thermal Transmittances of Building Components and Elements
  9. KOALCO F-0003: Aluminum Alloy Window
  10. KS D 6579: Aluminum & Aluminum Alloy Materials

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