Study on Development of Subroutine based on TRNSYS for Unglazed Transpired Air Collector System

TRNSYS 기반 무창기공형 공기식 집열 시스템 부프로그램 개발에 관한 연구

  • Park, J.U. (Department of Renewable Energy, Korean Institute of Energy Research) ;
  • Lee, E.J. (Department of Renewable Energy, Korean Institute of Energy Research) ;
  • Chung, M. (Department of Mechanical Engineering, Yeungnam University)
  • 박준언 (한국에너지기술연구원 신재생에너지부) ;
  • 이의준 (한국에너지기술연구원 신재생에너지부) ;
  • 정모 (영남대학교 기계공학부)
  • Published : 2003.06.30

Abstract

UTAC(unglazed transpired air collector) system has unique advantage for space heating and tempering ventilation air over the conventional collector system such as flat plate and vacuum collector. UTAC can improve radiative and convective loss due to nonglazed component and enhanced plate surface configuration. and heating energy and its equivalent green house emission performance can be improved from the use of this like collector in building application. The Option D Calibration simulation approach of IPMVP(International Performance Measurement and Verification Protocol) in ESCO businesses has been recommended to use of the calibrated computer modules like these Energy-10. DOE2.1E and TRNSYS(transient system simulation). This study is to develop subroutine type-203 of TRNSYS15.2 program and appraise thermal performance of UTAC. With newely addeded subroutine type-203. 1) Thermal performance of unglazed transpired collector could be possible based on dimensionless variables such as efficiency and heat exchanger effectiveness. and 2) Assessement of energy consists of solar useful and insulation saving for UTAC could be possible.

Keywords

References

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