DOI QR코드

DOI QR Code

An Analysis on Effects of Passive Heating of Low Energy House Using Heat in Greenhouse

온실의 열을 이용한 저에너지하우스의 패시브 난방 효과 분석

  • Yoo, Dong-Wan (Dept. of Construction Engineering, Semyung Univ.) ;
  • Lee, Tae-Goo (Dept. of Architectural Engineering, Semyung Univ.)
  • Received : 2016.08.29
  • Accepted : 2016.10.25
  • Published : 2016.10.31

Abstract

Purpose: In Korea, to reduce greenhouse gas emissions, energy performance standard of buildings is being reinforced with goals of Passive House until 2017 and Zero Energy House until 2025 in order to reduce emissions from buildings which constitute a quarter of greenhouse gas emissions. In order to achieve the target of Zero Energy House, it is certainly necessary to develop renewable energy that can replace cooling and heating energy occupying a significant amount of building energy consumption after increasing the energy performance firstly. Method: In this study, effects of heat in greenhouse heated by solar heating on indoor heating were analyzed by constructing a greenhouse in front of the Low Energy Building. Result: As a result, indoor temperature was increased by peak average $27.8^{\circ}C$, peak average $6.8^{\circ}C$ was increased from when heat in greenhouse has not been used for heating and indoor surface temperature was increased by average $5.1^{\circ}C$. It shows it can be possible to use heat in greenhouse for heating, if the heating effects can be same as this experimental result because Energy Saving-Type buildings such as Low Energy House or Passive House keep from 18 to $20^{\circ}C$ in winter. Therefore, even if energy supply is cut off by disasters and other reasons, cooling and heating can be possible for some time.

Keywords

References

  1. H.J.J. Janssen, Th.H. Gieling, S.L. Speetjens, J.D.Stigter and G. van Straten, Watergy, towards a closed greenhouse in semi-arid regions: infra structure for process control, Acta Horticulturae.
  2. M. Buchholz, P. Jochum and G. Zaragoza. Basic water(2005), heat and food supply from a closed greenhouse--The Watergy Project, Acta Horticulturae.
  3. M. Buchholz, R. Buchholz, P. Jochum, G. Zaragoza and J. Perez-Parra(2006), Temperature and Humidity Control in the Watergy Greenhouse. Acta Horticulturae.
  4. M. Buchholz, P. Jochum and G. Zaragoza, Basic water, heat and food supply from a closed greenhouse-The Watergy project. Acta Horticulturae
  5. Grun cool-Gebaudeklimatisierung durch Verdunstungsleistung von Pflanzen, FLL Fachtagung Innenraumbegrunung Gartenbauzentrum Essen 25.-26. November 2009
  6. PROJECT WATERGY: A CLOSED GREENHOUSE FOR MINIMIZED WATER CONSUMPTION AND OPTIMIZED SOLAR ENERGY USE, CIES 2006, 2006.11.10
  7. Towards Model Based Adaptive Control for the Watergy Greenhouse-Design and Implementation, 2008.06.23.
  8. 유동완 외 2인(2014). 건축물에서의 빗물활용을 통한 냉난방에너지 저감 사례 연구. 한국생태환경건축학회 학술발표대회 논문집 제14권 제1호. p.118-119
  9. 유동완 외1인(2015). 온실을 통한 건축물 에너지 자립 시스템 효과분석. 한국생태환경건축학회 학술발표대회 논문집 제15권 제1호. p.62-63
  10. 국가 온실가스 인벤토리 보고서(2015), 온실가스종합정보센터