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The Effect of Thermal Diffusivity on the System Efficiency of a DOTEC Cycle
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  • The Effect of Thermal Diffusivity on the System Efficiency of a DOTEC Cycle
  • The Effect of Thermal Diffusivity on the System Efficiency of a DOTEC Cycle
저자명
Yoon. Jung-In,Choi. Kwang-Hwan,Kwakye-Boateng. Patricia,Son. Chang-Hyo,Kim. Hyeon-Ju,Lee. Ho-Saeng
간행물명
한국동력기계공학회지
권/호정보
2013년|17권 5호|pp.58-63 (6 pages)
발행정보
한국동력기계공학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

In this study, the effect of deep ocean condenser inlet temperature ($T_{DOI}$), condenser inlet pressure ($P_{cond,in}$), and thermal diffusivity on system efficiency of some selected refrigerants was analyzed using HYSYS. The proposed DOTEC cycle is similar to the reheat Rankine cycle but eliminates irreversibilities by bleeding a fraction of the steam between certain stages of the turbine. The evaporator inlet mass flow rate, inlet temperature of turbine 1, turbine efficiency and inlet and outlet temperature of heat source were imposed. The working fluids considered are sorted in ascending order of their molecular weights as R717, R600a and R152a. Results indicated that a fluid with a lower boiling point temperature like R717 needs a corresponding high heat source and/or evaporator inlet pressure. Also, the response of thermal diffusivity closely follows the change in TDOI as an increase in $T_{DOI}$ increases $P_{cond,in}$ which reduces thermal diffusivity and system efficiency. Furthermore, the fluid with the nominal boiling point temperature has the highest efficiency with efficiency decreasing with an increase in TDOI.