Browse > Article

The Performance Characteristics of Heat Pump Using the Refrigerant Subcooling  

Roh, Geon-Sang (Department of Refrigeration and Air-conditioning Engineering, Tong Myong University)
Son, Chan-Ghyo (School of Mechanical Engineering, Pukyong National University)
Publication Information
Transactions of the Korean hydrogen and new energy society / v.18, no.4, 2007 , pp. 413-421 More about this Journal
Abstract
In this paper, the performance characteristics of heat pump system using a new refrigerant subcooling system designed for the study, are introduced. The new heat pump system have the ice storage tank at the outlet of condenser. The experimental apparatus is a well-instrumented water/water heat pump which consisted of working fluid loop, coolant loop, and ice storage tank. The experiment parameters of subcooling ranged as the evaporating temperature from $-5^{\circ}C$ to $8^{\circ}C$, the condensing temperature from $30^{\circ}C$ to $35^{\circ}C$. The test of the ice storage was carried out at evaporating temperature of $-10^{\circ}C$ and the ice storage mode is Ice-On-Coil type. The working fluid was R-22 and the storage materials were city-water. The test results obtained were as follows; The refrigerant mass flow rate and compressor shaft power were unchanged by the degrees of subcooling, that is, they were independent of degrees of subcooling. The cooling capacity of the new heat pump system increase as the evaporating temperature and subcooling degrees increase and is higher by $25{\sim}30%$, compared to the normal heat pump system. The COP of the new heat pump system increases as the degrees of subcooling and evaporating temperature increase and is higher by 28% than that of the normal heat pump system.
Keywords
heat pump; refrigerant subcooling; subcooling system;
Citations & Related Records
연도 인용수 순위
  • Reference
1 이윤표, '열저항의 측면에서 본 빙축열조의 구성', 냉동공조기술, Vol. 10, No. 3, 1993, pp. 64-73
2 Mei, V. C., Gulati, N. K., Chen, F. C., Miller, W. A., 'Test of condensate subcooling coils for air conditioners', ASHRAE Transactions, 1990, pp. 68-71
3 Snelson, W. K., Linton, J. W., Triebe, A. R., 'System drop-in tests of refrigerant blend R-125/R-143a/R-134a(44%/52%/4%) compared to R-502', ASHRAE Transactions, 1993, pp. 17-24
4 Ogoshi, H., '冷媒過冷却を 用いた 氷蓄熱 システム', 冷凍, Vol. 63, No. 734, 1989, pp. 35-40
5 유호선, 강채동, 윤호식, 홍희기, 김영일, 배철호, '공조용 축열시스템 개발 (II)', 과학기술처, 1989, pp. 162
6 김정수, '한전의 축냉식 냉방설비 보급지원 제도', 한국전력공사 전력연구원, 1999, pp. 47-54
7 유호선, 강채동, 윤호식, 홍희기, 김영일, 배철호, '공조용 축열시스템 개발 (II)', 과학기술처, 1989, pp. 79