DERIVED THERMODYNAMIC DESIGN DATA FOR RANKINE POWER CYCLE SYSTEMS OPERATING ON PP9.
Author(s) : LEE R., DEVOTTA S., HOLLAND F. A.
Type of article: Article
Summary
THE THEORETICAL RANKINE POWER CYCLE EFFICIENCIES AND THE PRESSURE RATIOS HAVE BEEN PRESENTED FOR RANKINE POWER CYCLES OPERATING ON PP9 (PERFLUOROMETHYLDECALIN). THESE VALUES ARE LISTED IN TABULAR FORM FOR TEMPERATURE DROPS OF 10-75 K AND FOR BOILER TEMPERATURES 323-563 K (50-290 DEG C) IN 5 K INCREMENTS. A COMPOSITE GRAPH SHOWING THE RELATIONSHIP BETWEEN PRESSURE RATIOS AND TEMPERATURE DROP ILLUSTRATES THE FEASIBLE OPERATING RANGE FOR PP9 POWER CYCLE SYSTEMS. THE DERIVED THERMODYNAMIC DATA CAN BE USED FOR THE RAPID PRELIMINARY DESIGN OF RANKINE POWER CYCLE SYSTEMS OPERATING ON PP9.
Details
- Original title: DERIVED THERMODYNAMIC DESIGN DATA FOR RANKINE POWER CYCLE SYSTEMS OPERATING ON PP9.
- Record ID : 1985-0050
- Languages: English
- Source: J. Heat Recov. Syst. - vol. 4 - n. 1
- Publication date: 1984
- Document available for consultation in the library of the IIR headquarters only.
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Indexing
- Themes: Thermodynamics and changes of state
- Keywords: Rankine; Thermodynamic property; Cycle
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DERIVED THERMODYNAMIC DESIGN DATA FOR RANKINE P...
- Author(s) : LEE R., DEVOTTA S., HOLLAND F. A.
- Date : 1984
- Languages : English
- Source: J. Heat Recov. Syst. - vol. 4 - n. 1
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DERIVED THERMODYNAMIC DESIGN DATA FOR RANKINE P...
- Author(s) : LEE R., DEVOTTA S., HOLLAND F. A.
- Date : 1983
- Languages : English
- Source: J. Heat Recov. Syst. - vol. 3 - n. 6 1983
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DERIVED THERMODYNAMIC DESIGN DATA FOR RANKINE P...
- Author(s) : WELSBY P., DEVOTTA S., HOLLAND F. A.
- Date : 1984
- Languages : English
- Source: J. Heat Recov. Syst. - vol. 4 - n. 1
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DERIVED THERMODYNAMIC DESIGN DATA FOR RANKINE P...
- Author(s) : ADEFILA S. S., DEVOTTA S., HOLLAND F. A.
- Date : 1984
- Languages : English
- Source: J. Heat Recov. Syst. - vol. 4 - n. 3
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DERIVED THERMODYNAMIC DESIGN DATA FOR RANKINE P...
- Author(s) : ADEFILA S. S., DEVOTTA S., HOLLAND F. A.
- Date : 1985
- Languages : English
- Source: J. Heat Recov. Syst. - vol. 5 - n. 1
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