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구조단열패널의 저에너지주택 적용을 위한 내화 및 단열성능 평가

Fire Resistance Performance and Thermal Performance Evaluation of Structural Insulated Panels for Low-Energy Houses

  • 이현주 (한국전력공사 전력연구원) ;
  • 나환선 (한국전력공사 전력연구원) ;
  • 이철희 (한국전력공사 전력연구원) ;
  • 최성모 (서울시립대학교 건축학부)
  • 투고 : 2012.05.18
  • 심사 : 2012.06.15
  • 발행 : 2012.06.30

초록

Structure Insulated Panel (SIP) is an wooden structure material with which structure and insulation functions are satisfied. Hence, it would be a cost-effective model to implement low energy house which has higher insulation and structure performance and which the wall thickness is able to be reduced. In this study, performance of thermal insulation and fire resistance were evaluated in order to verify applicability to low energy house. Fire resistance test is performed on vertical load bearing members for partitions, and the test results satisfy one hour of fire resistance condition according to KS F 2257. The members include two layers of fireproof gypsum board with thicknesses of 12.5mm attached to SIP. Thermal insulation performance is satisfied with the 2012 standard ($0.225W/m^2{\cdot}K$). As the performance of resistance and thermal insulation are satisfied, SIP is expected to be applied to low energy building materials. In the future, the structural safety will be confirmed by structural performance and seismic performance test and the guidelines for distribution will be drawn up.

키워드

참고문헌

  1. ASTM E119 (2012) Standard Test Methods for Fire Tests of Building Construction and Materials.
  2. BASF CHEMICAL COMPANY (2006) Ecoefficiency Analysis of Residential Insulation Systems.
  3. Canadian Wood Council (1999) Life Cycle Analysis for Residential Buildings. Wood the Renewable Resource Bulletin, No.5.
  4. Canadian Wood Council (2000) Fire Safety in Residential Buildings. Building Performance Series Bulletin, No. 2.
  5. Canadian Wood Council (2002) Fire Resistance and Sound Transmission in Wood-Frame Residential Buildings. International Building series No.3.
  6. Canadian Wood Council (2002) Thermal Performance of Light-Frame Assemblies. International Building series No.5.
  7. H.J. Lee, H.S. Na, K.S. Kim, C.H. Lee. (2011) A Study on the Fire Resistance Performance For Structural Insulated Panels. Jounal of Korea institute for Structural Maintenance Inspection, Vol.15, No.1, pp.287-288.
  8. H.J. Lee, H.S. Na, K.S. Kim, C.H. Lee. (2011) A Study on the Thermal Performance For Structural Insulated Panels. Jounal of Korea institute for Structural Maintenance Inspection, Vol.15, No.1, pp.18-19.
  9. H.J. Moon. (2006) Comparison of TVOC Concentrations in Zero Energy Houses and Conventional Houses. Jounal of Architectural Institute of Korea, Vol.22, No.4, pp.269-276.
  10. H.S. Na. et al (2011) Development of Standard Model for All Electrified House(Interim Reports).
  11. I.K. Kwon, N.Y. Jee (2003) Study on the Fire Resistant Performance of Load-Bearing Walls using Light Gauge Steels and Gypsum Boards. Jounal of Architectural Institute of Korea, Vol.19, No.8, pp.83-90.
  12. Jan Kosny et al (1999) Whole Wall Rating/Label for Structural Insulated Panel Steady-State Thermal Analysis. Oak ridge National Laboratory Building Tech Center, pp.83-90.
  13. J.S Park, K.H.Hwang, and K.M. Kim. (2010) Improvement of fire resistance for timber framed walls by reinforcement of heavy timber frame. Jounal of Korea Furniture Society, Vol.32, No.6, pp.469-478.
  14. Korean Standards Association (2002) Thermal insulation- Determination of steady-state thermal transmission properties-Calibrated and guarded hot box, KS F 2277.
  15. Korean Standards Association (2004) Method of fire resistance test for elements of building construction -Specific requirements for non-loadbearing vertical separating elements, KS F 2257-4.
  16. Ministry of Knowledge Economy (2004) Korea Energy Management Corporation, Guidelines of Insulators Static for homes, pp.10.
  17. National Fire Protection Association (1998) Examining Fires in Selected Residential Properties.

피인용 문헌

  1. Elements and Apply Techniques for Improving the Insulation of Rural Houses vol.21, pp.4, 2015, https://doi.org/10.7851/ksrp.2015.21.4.187
  2. 구조단열패널 적용 저에너지주택의 총에너지사용량 평가 vol.4, pp.2, 2012, https://doi.org/10.11004/kosacs.2013.4.2.015