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An Study on Design Method of Thermally Activated Building System(TABS) Considering Un-steady State Analysis in Residential Building

주거건물의 구체축열시스템 적용 시 비정상상태 해석을 반영한 설계 방법에 관한 연구

  • Received : 2012.02.24
  • Published : 2012.11.25

Abstract

The thermally activated building system (TABS) is a thermal storage that uses the concrete slab to reduce the peak cooling load. A radiant cooling/heating system is typically designed with consideration on a peak load in a steady state to size the capacity. However, the design of the TABS should consider the time-lag effect due to the high heat capacity of the concrete slab in an un-steady state. Temperature of the concrete slab cannot be changed instantly, which may cause overcooling, overheating and condensation. This paper analyzed the design method considering the un-steady state using building simulation for more effective application of TABS. In order to achieve the objective, applicable range of the load handled by TABS should be determined. And the design method to operate the TABS with steady supply water temperature and operation period is proposed.

Keywords

Acknowledgement

Supported by : 국토해양부

References

  1. 박상훈, 김일민, 구소영, 여명석, 김광우, 구체축열시스템의 설계인자 조합에 따른 방냉량 영향도 분석에 관한 연구, 한국건축친환경설비학회논문집, 4(2), 2010
  2. 김일민, 대상 냉난방 공간의 위치를 고려한 구체축열시스템의 단면설계, 서울대학교 대학원 건축공학과 건축환경계획 전공 석사 학위논문, 2011
  3. 정창호, 오혜원, 이윤정, 여명석, 김광우, 바닥 복사냉난방 시스템의 바닥 패널 설계 방법 비교 연구, 한국건축친환경설비학회논문집, 5(1), 2011
  4. CEN, EN1264, Heating system in buildings, CEN, 2009
  5. CEN, EN 15377-1: Heating system in buildings - Design of embedded water based surface heating and cooling system - Part 1: Determination of the design heating and cooling capacity, CEN, 2007
  6. Jan Babiak, Bjaren W. Olesen, Dusan Petras, Low Temperature Heating and High Temperature Cooling, rehva, 2007
  7. ASHRAE, ASHRAE system Handbook-Chap.6, Panel Heating and Cooling, ASHRAE, 2009
  8. ISO, ISO/DIS 11855, Building environment design - Standards for the design construction and operation of radiant heating and cooling system, ISO, 2011
  9. ISO, ISO 7730: Ergonomics of the thermal environment-Analytical determination and interpretation of thermal comfort using calculation of the PMV and PPD indices and local thermal comfort criteria, ISO, 2005
  10. Beat Lehmann, Biktor Dorer, Markus Koschenz, Application range of thermally activated building system tabs, Energy and Buildings 39, 2007
  11. Jurg Todtli Markus Gweder, Beat Lehmann, Franz Fenggli, Viktor Dorer, Integratd design of thermally activated builidng systems and of their control, 9th rehva World Congress for building Technologies - CLIMA, 2007
  12. Gwerder, M., Lehmann, B., Todtli, J., Dorer, V., Renggli, F, Control of thermally-activated building system(TABS). Applied Energy, 85(7), 2008
  13. Olesen, B. W., Sommer, K., Duchting, B, Control of slab heating and cooling systems studied by dynamic computer simulations, 2002
  14. Park, S. et al, Operation mode of a thermally activated building system according to the starting time and the operating hours in residential building, ISES Solar World Congress, 2011
  15. Park, S., Kim, I., Koo, S., Yeo, M., Kim, K, The effect on the heat output by combination of design factors of thermally activated building system(TABS). Journal of the Korean Institute of Architectural Sustainable Environment and Building System 4(3), 2011
  16. Chung, W. et al, Feasibility of a Thermally Activated Building System in Residential Buildings, ISES Solar World Congress, 2011
  17. Yoo, M. et al. Evaluation on energy performance of thermally activated building system (TABS) in residential building. Proceeding of Autumn Annual Conference of the Architectural Institute of Korea, Planning & Design 31(2), 2011