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Development of High-Efficiency Hybrid Insulation for Reinforced Fire Safety Code in Korea

강화된 화재안전기준을 만족하는 고효율 복합단열재 개발

  • 고귀한 ((주)에어론 기술연구소) ;
  • 최은수 (한국건설생활환경시험연구원) ;
  • 권영철 (한라대 건축학과)
  • Received : 2022.04.13
  • Accepted : 2022.06.30
  • Published : 2022.07.30

Abstract

On September 1, 2018, the building energy saving design guideline was reinforced according to the Zero Energy Building Road Map. On August 6, 2019, due to consecutive large building fires, the building fire safety guideline was also reinforced, and the fire performance of external systems was required in the building finishing system from December 23, 2021. This study examines the reinforced building energy saving design guideline and building fire safety guideline to present the required thickness of various insulations that meet the reinforced building insulation and fire safety guideline. The thickness of non-combustible exterior insulations for buildings above three stories were presented. Non-combustible glass wool above 48K, mineral or rock wool, phenol foam board for the exterior wall of office buildings in central one region should be used as thick as 190mm, 225mm, 120mm, respectively. The high-efficiency hybrid insulation developed in this study can satisfy both the reinforced building fire safety code and reinforced building energy saving design standard with less thickness of 55-75mm.

Keywords

Acknowledgement

이 연구는 2020년도 한국연구재단 연구비 지원에 의한 결과의 일부임. 과제번호:2020R1I1A3A04037786 이 연구는 2020년도 중소벤처기업부의 기술개발사업 지원에 의한 연구임. 과제번호:S2946165

References

  1. British Standards Institution(BSI) (2015). Fire performance of external cladding systems. Test method for non-loadbearing external cladding systems fixed to and supported by a structural steel frame(BS 8414-2:2015). British Standards Institution. https://webstore.ansi.org/Standards/BSI/BS84142020.
  2. Ha, J., Shin, H., & Song, T. (2019). Development of organic-inorganic hybrid insulating materials with semi-noncombustible using by recycling gypsum, JRCR, 7(4), 431-437.
  3. Hong, K., Yang, S., Bark, J., & Lee, J. (2020). A study on the limited-combustible eco-friendly husk insulation, Proceedings of KISMI, 24(1), 8.
  4. Kim, K., & Park, T. (2019). Thermal performance test of low emissivity thin film composite insulator, Proceedings of AIK, 39(1), 565-566.
  5. Kim, W., Kang, K., Park, C., & Kwon, Y. (2021). Study on the thermal bridge reduction method between windows and walls, LHI Journal, 12(1), 119-128.
  6. Korean Ministry of Land, Infrastructure and Transport (MOLIT) (2017). Building energy saving design guideline, No.2017-1108.
  7. Korean Ministry of Land, Infrastructure and Transport (MOLIT) (2019a). Roadmap on mandatory zero energy building.
  8. Korean Ministry of Land, Infrastructure and Transport(MOLIT) (2019b). Standards for the combustibility and fire spread-protecting structure of building finishing materials, Notification of Korean Ministry of Land, Infrastructure and Transport, No.2019-573.
  9. Korean Ministry of Land, Infrastructure and Transport(MOLIT) (2019c). Regulations on the guidelines on the escape and fire-protection structure of buildings, Enforcement Ordinance of Building Code, No.641.
  10. Korean Ministry of Land, Infrastructure and Transport(MOLIT) (2021). Regulations on the guidelines on the escape and fire-protection structure of buildings, Enforcement Ordinance of Building Code, No.931.
  11. Korean Agency for Technology and Standards(KATS) (2015). Reaction to fire test-Heat release, smoke production and mass loss rate-Part 1: Heat release rate(cone calorimeter method)(KS F ISO 5660-1:2015). Korean Standards & Certifications. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059234000300231
  12. Korean Agency for Technology and Standards(KATS) (2019a). Testing method for gas toxicity of finish materials of buildings(KS F 2271:2019). Korean Standards & Certifications. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059234000241066
  13. Korean Agency for Technology and Standards(KATS) (2017). Thermal insulation - Determination of steady -state thermal transmission properties - Calibrated and guarded hot box(KS F 2277:2017). Korean Standards & Certifications. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059245599711455.
  14. Korean Agency for Technology and Standards(KATS) (2019b). Standard test method for fire performance of external cladding systems of buildings(KS F 8414:2019). Korean Standards & Certifications. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059198946539512.
  15. Kwon, Y., & Park, M. (2016). Research on the development of non-combustible low-emissivity hybrid insulation, Journal of KIAEBS, 10(6), 470-476.
  16. Kwon, Y. (2021). Architectural Environment Design, Seoul, Hansol Academy, 150-158.
  17. Kwon, Y., & Kim, S. (2019). Research on the architectural applications of high-performance vacuum insulation panel, LHI Journal, 10(3), 23-32.
  18. Kwon, Y., & Um, S. (2020). A study on the development of high-efficiency insulations for reinforced building insulation and fire safety code in Korea, Journal of KFMA, 15(2), 49-55.
  19. Lee, H., Choi, G., Song, J., Kim, W., & Kang, J. (2021). Development of EPS insulation with improved insulating and non-combustible performance, J. Korean Soc. Living Environ. Sys., 28(3), 251-260. https://doi.org/10.21086/ksles.2021.6.28.3.251
  20. Park, J., & Cho, N. (2018). An experimental study on fire spreading external wall of buildings using dry construction method, Fire Sci. Eng., 32(4), 75-85. https://doi.org/10.7731/KIFSE.2018.32.4.075
  21. Seo, J., Hong, S., & No, S. (2018). Prediction of wall insulation performance by design parameters of low emissivity thin-film composite insulation, Journal of KIAEBS, 12(5), 433-448.
  22. Seo, J., Hong, S., Shin, J., & Kim, D. (2021). A proposal of performance evaluation method for composite insulation with low-emissivity thin film and Polyethylene Foam, Journal of KIAEBS, 15(5), 499-512.
  23. Korea Conformity Laboratories(KCL). (2017a). Test Report No. PC17-00628. Korea Conformity Laboratories.
  24. Korea Conformity Laboratories(KCL). (2017b). Test Report No. PC17-00629. Korea Conformity Laboratories.
  25. Korea Institute of Civil Engineering and Building Technology(KICT). (2019). Test Report No. KICT-R-K-2019-00531-1-2-1. Korea Institute of Civil Engineering and Building Technology.
  26. Korea Conformity Laboratories(KCL). (2019a). Test Report No. CT19-091533K. Korea Conformity Laboratories.
  27. Korea Conformity Laboratories(KCL). (2019b). Test Report No. CT19-112164K. Korea Conformity Laboratories.
  28. Korea Conformity Laboratories(KCL). (2020). Test Report No. CT20-042010K. Korea Conformity Laboratories.
  29. Korea Conformity Laboratories(KCL). (2021a). Test Report No. CT21-080487K. Korea Conformity Laboratories.
  30. Korea Conformity Laboratories(KCL). (2021b). Test Report No. CT21-100884K, Korea Conformity Laboratories.
  31. Korea Testing & Research Institute(KTRI). (2017a). Test Report No. TAK-000471. Korea Testing & Research Institute.
  32. Korea Testing & Research Institute(KTRI). (2017b). Test Report No. TAK-014494. Korea Testing & Research Institute.
  33. Korea Testing & Research Institute(KTRI). (2021a). Test Report No. THF-2021-000374. Korea Testing & Research Institute.
  34. Korea Testing & Research Institute(KTRI). (2021b). Test Report No. THF-2021-000462. Korea Testing & Research Institute.
  35. SGS Korea. (2021a). Test Report No. K-21-0066-R0. SGS Korea.
  36. SGS Korea. (2021b). Test Report No. K-21-0073-R0. SGS Korea.
  37. SGS Korea. (2021c). Test Report No. K-21-0128-R0. SGS Korea.