WUFI를 이용한 공동주택 붙박이가구의 층별·형태별 결로 생성 비교 평가

Comparative Evaluation of Condensation by Type and Layer Around Built-in Furniture of Apartment Buildings

  • 유지원 (숭실대학교 건축학부 건축환경재료연구실) ;
  • 장성진 (숭실대학교 건축학부 건축환경재료연구실) ;
  • 이종기 (숭실대학교 건축학부 건축환경재료연구실) ;
  • 위승환 (숭실대학교 건축학부 건축환경재료연구실) ;
  • 김수민 (숭실대학교 건축학부 건축환경재료연구실)
  • Yoo, Jiwon (Building Envrionment & Materials Lab, Shcool of Architecture, Soongsil University) ;
  • Chang, Seong Jin (Building Envrionment & Materials Lab, Shcool of Architecture, Soongsil University) ;
  • Lee, Jongki (Building Envrionment & Materials Lab, Shcool of Architecture, Soongsil University) ;
  • Wi, Seunghwan (Building Envrionment & Materials Lab, Shcool of Architecture, Soongsil University) ;
  • Kim, Sumin (Building Envrionment & Materials Lab, Shcool of Architecture, Soongsil University)
  • 투고 : 2017.12.15
  • 심사 : 2018.01.10
  • 발행 : 2018.01.25

초록

Recently, as the continuously increasing of the one-person households, builders were focusing on a built-in furniture development for efficiency. Through the dead space of the space can be reduced. Also, Condensation that occurs in a built-in furnitures installation space may result in different results depending on the room's direction, floor, finish, adjacent room effect, occupant's lifestyle. In this background, it can be considered in terms of functional aspect and morphological aspect by using WUFI2D simulation system. As a result, the tendency of occurrence of condensation was examined by comparing the water content and the growth potential of fungus graph which came from WUFI2D. Results of this study are as followings: Built-in furniture, both top & bottom open, is more stable to condensation than the built-in furniture with the top or bottom open. Also, Among from the top floor built-in furniture to the bottom of it, the bottom one is more stable to condensation.

키워드

참고문헌

  1. Seong Jin Chang, Yujin Kang, Seunghwan Wi, Su-Gwang Jeong, and Sumin Kim. 2017. Hygrothermal performance improvement of the Korean wood frame walls using macro-packed phase change materials (MPPCM), Thermal engineering, 457-465.
  2. Filip Fedorik and Kimmo Illikainen. 2012. HAM and mould growth analysis of a wooden wall, International Journal of Sustainable Built Environment, Volume 2, Issue 1, 19-26. https://doi.org/10.1016/j.ijsbe.2013.09.002
  3. Seulgi Yu, Seong Jin Chang, and Sumin Kim. 2016. Comparison of Hygrothermal Performance between Wood and Concrete Wall Structures using Simulation Program, 목재공학, 283-293.
  4. Hyun-Hwa Lee, Hae-Rin Oh, Jae-Han Lim, and Seung-Yeong Song. 2016. Evaluation of the thermal environment for condensation and mold problem diagnosis around built-in furniture in Korean apartment buildings during summer and winter, Energy Procedia, 601-612.
  5. ASHRAE HANDBOOK. 2005. Fundamentals, Thermal and Moisture Control in Insulated Assemblies_Fundamentals (Chapter 23).
  6. 강유진, 장성진, 김수민. 2016. 실내외 기후 조건에 따른 목조 벽체의 열.습기 성능 평가, 대한건축학회 학술 발표대회 논문집, 281-282.
  7. 강유진, 김수민. 2016. WUFI 시뮬레이션 프로그램을 이용한 목조주택 벽체 레이어 구성에 따른 hygrothermal 성능 평가, 목재 공학, 75-84.
  8. 김다영, 이윤혜, 차승언, 김미경. 2012. 소형공동주택 모델하우스에 나타난 붙박이가구의 계획특성, 한국생활과학회 학술대회 논문집, 202-203.
  9. 이가경, 임석호. 2010. 공동주택 안목치수 설계기준에 의한 붙박이장의 표준화방안 연구, 한국주거학회논문집 21(6), 53-60. https://doi.org/10.6107/JKHA.2010.21.6.053
  10. 오혜린, 이현화, 임재한, 송승영. 2016. 기존 공동주택 붙박이장에서 보조난방장치 설치조건에 따른 표면 결로 방지 성능 평가, 대한건축학회 학술발표대회 논문집, 517-518.
  11. 이현화, 오혜린, 임재한, 송승영. 2016. 공동주택 붙박이장 설치 공간에서 결로 발생 현상 진단을 위한 동계 실내 온열 환경 평가, 대한건축학회 논문집 - 계획계 32(7), 131-140.
  12. 이승용. 2008. 붙박이장의 형태, 구조 변화와 소비자 특성 연구, 한국콘텐츠학회논문지, 8(3), 146-155. https://doi.org/10.5392/JKCA.2008.8.3.146
  13. 장성진, 강유진, 위승환, 정수광, 김수민. 2016. 국내 농어촌 표준 목조주택의 hygrothermal 성능 분석, 목재공학, 440-448.
  14. www.hyndailivart.co.kr.