Numerical Study on Thermal Characteristics at Absorber Plate of Flat-Plate Solar Collector with Single Riser

평판형 집열기의 단일 지관에서의 입구 Re수에 따른 흡열판 온도분포에 대한수치해석 연구

  • Kim, Jeong-Bae (Solar Thermal Research Center, KIER(Korea Institute of Energy Research)) ;
  • Lee, Dong-Won (Solar Thermal Research Center, KIER(Korea Institute of Energy Research)) ;
  • Baek, Nam-Choon (Solar Thermal Research Center, KIER(Korea Institute of Energy Research))
  • 김정배 (한국에너지기술연구원 태양열연구센터) ;
  • 이동원 (한국에너지기술연구원 태양열연구센터) ;
  • 백남춘 (한국에너지기술연구원 태양열연구센터)
  • Published : 2007.09.30

Abstract

It is essential to know the heat transfer characteristics at the absorber plate of Flat-plate solar collector for optimum design. For flat-plate solar collector, it is difficult to experimentally study the effect for the Reynolds number of riser considering low mass flow rate being applied into the collector with one riser tube. So, this study were performed to show the heat transfer characteristics of flat-plate solar collector with single absorber plate and riser for various Reynolds number at riser using commercial code FLUENT 6.0. The base collector size is chosen with $0.4m^2$ as 0.2m by 2m with single riser in this study, Reynolds number at riser is from 200 to 1200 including about 530 at typical flat-plate collector with 10 risers considering the mass flow rate of 0.02kg/s per collector area for the certificate test Through the simulation, the results were presented as the temperature distribution at the absorber plate for various flow rate and solar irradiance conditions, then showed the effective length scale of the absorber plate The real solar irradiation condition is assumed as the constant heat flux condition of $500w/m^2$ considering the annual average solar irradiance in Korea.

Keywords

References

  1. 지명국, 정효민, 정한식, 이철재, 지관 형상에 따른 평판형 태양열 집열기의 최적설계, 공기조화 냉동공학회 2000 동계 학술발표회 논문집, pp.675-681
  2. 고동국, 윤석주, 평판형 집열기를 이용한 덕트 내부 유동 해석, 공기조화 냉동공학회 2000 동계 학술발표회 논문집, pp.280-284
  3. 조덕기 외, 한반도 태양에너지 자원의 분석, 평가 및 데이터 신뢰성 향상 연구, 산업자원부 보고서, 2006