The Operation Characteristics of a Sea Water Source Heat Pump System

해수열원 히트펌프 시스템의 운전특성

  • Chang, Ki-Chang (Geothermal Energy Research Center, Korea Institute of Energy Research(KIER)) ;
  • Baik, Young-Jin (Geothermal Energy Research Center, Korea Institute of Energy Research(KIER)) ;
  • Ra, Ho-Sang (Geothermal Energy Research Center, Korea Institute of Energy Research(KIER)) ;
  • Kim, Ji-Young (Geothermal Energy Research Center, Korea Institute of Energy Research(KIER)) ;
  • Lee, Jae-Hoon (Geothermal Energy Research Center, Korea Institute of Energy Research(KIER))
  • 장기창 (한국에너지기술연구원(KIER) 지열에너지연구센터) ;
  • 백영진 (한국에너지기술연구원(KIER) 지열에너지연구센터) ;
  • 나호상 (한국에너지기술연구원(KIER) 지열에너지연구센터) ;
  • 김지영 (한국에너지기술연구원(KIER) 지열에너지연구센터) ;
  • 이재훈 (한국에너지기술연구원(KIER) 지열에너지연구센터)
  • Published : 2008.06.25

Abstract

A sea water source cascade heat pump was designed and tested in this study. The system was designed to perform a single stage operation in summer, as well as a cascade operation in winter to ensure the high temperature lift. A steady-state simulation model was developed to analyze and optimize its performance. The simulation results show that the R717 exhibits best performance among combinations considered in this study. A R410A also exhibits the highest performance among HFCs with the smallest compressor displacement. A 15-RT R410A-R134a pilot system was installed in the 5-story commercial building at Samcheok City by the East Sea. A scroll type R410A compressor, a reciprocating type R134a compressor, plate type condenser/ evaporator/ cascade heat exchanger and two electronic expansion valves were used to build a pilot. A titanium plate type heat exchanger is also used for the heat exchanging with a sea water. The heat source/sink water is supplied from the well below the seashore in the depth of 5 m. In the initial test of the system, supply water temperature was rising up to $67^{\circ}C$ using a sea water heat source of $9^{\circ}C$, while an ambient temperature was $4.5^{\circ}C$.

Keywords