IIR document
Thermodynamic transition from subcritical to transcritical CO2 cycle.
Author(s) : SHAO L. L., ZHANG C. L.
Type of article: Article, IJR article
Summary
Transcritical CO2 cycle has been widely investigated fundamentally and practically. However, transition between subcritical and transcritical CO2 cycles has not yet been well studied. In this work, temperature at maximum constant-pressure specific heat (pseudocritical temperature) in supercritical region is regarded as the extension of saturation temperature in subcritical region. The existing vapor pressure equation is therefore extended to well fit the pseudocritical temperature. Moreover, the relation between the optimal high pressure of transcritical cycle and the condensation pressure of subcritical cycle is developed. It turns out that the optimal high pressure starts at subcritical region near the critical point. Accordingly, three approaches including the optimal high pressure equation, the optimal overpressure ratio equation, and the extended optimal subcooling equation are proposed to define the optimal operating condition of CO2 cycle. This work demonstrated that knowledge of subcritical cycle can be transitioned to characterize the transcritical cycle.
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Pages: 123-129
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Details
- Original title: Thermodynamic transition from subcritical to transcritical CO2 cycle.
- Record ID : 30017223
- Languages: English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 64
- Publication date: 2016/04
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Indexing
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Themes:
Thermodynamics and changes of state;
CO2 - Keywords: Thermodynamics; Transition (generic); Temperature; R744; Pressure; Transcritical cycle; COP; CO2
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