Heat Transfer and Pressure Drop Characteristics of Supercritical $CO_2$ in a Helically Coiled Tube

초임계 $CO_2$의 헬리컬 코일관 내 열선단과 압력강하 특성

  • Yu, Tae-Guen (Department of Refrigeration and Air-Conditioning Engineering, Pukyong National University) ;
  • Kim, Dae-Hui (Department of Refrigeration and Air-Conditioning Engineering, Pukyong National University) ;
  • Son, Chang-Hyo (Department of Refrigeration and Air-Conditioning Engineering, Pukyong National University) ;
  • Oh, Hoo-Kyu (Department of Refrigeration and Air-Conditioning Engineering, Pukyong National University)
  • 유태근 (부경대학교 냉동공조공학과) ;
  • 김대희 (부경대학교 냉동공조공학과) ;
  • 손창효 (부경대학교 냉동공조공학과) ;
  • 오후규 (부경대학교 냉동공조공학과)
  • Published : 2005.11.25

Abstract

The heat transfer and pressure drop of supercritical $CO_2$ cooled in a helically coiled tube was investigated experimentally. The experiments were conducted without oil in the refrigerant loop. The experimental apparatus of the refrigerant loop consist of receiver, a variable speed pump, a mass flowmeter, a pre-heater, a gas cooler(test section) and an isothermal tank. The test section is a helically coiled tube in tube counter flow heat exchanger with $CO_2$ flowed inside the inner tube and coolant( water) flowed along the outside annular passage, It was made of it copper tube with the inner diameter of 4.55[mm]. the outer diameter of 6.35 [mm] and length of 10000 [mm]. The refrigerant mass fluxes were $200^{\sim}600$ [kg/m2s] and the inlet pressure of gas cooler varied from 7.5 [MPa] to 10.0 [MPa]. The main results are summarized as follows : The heat transfer coefficient of supercritical $CO_2$ increases, as the cooling pressure of gas cooler decreases. And the heat transfer coefficient increases with the increase of the refrigerant mass flux. The pressure drop decreases in increase of the gas cooler pressure and increases with increase the refrigerant mass flux.

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