Thermodynamic analysis of combined diesel engine absorption unit-turbocharged engine.
Author(s) : MOSTAFAVI M., AGNEW B.
Type of article: Article
Summary
The paper describes the effects of pressure ratio of the turbocharged diesel engine on the amount of net work and efficiency of the engine, and also the amount of energy available in the exhaust gases, which can be used to drive an absorption refrigeration machine. For an ideal cycle, the combined cycle is examined based on thermodynamic laws and the acceptance envelope identified. Then, based on the correlations derived, graphs have been plotted for the net work, efficiency and the amount of cooling load available in exhaust gases as a function of pressure ratio and temperature ratio of the cycle.
Details
- Original title: Thermodynamic analysis of combined diesel engine absorption unit-turbocharged engine.
- Record ID : 1997-1452
- Languages: English
- Source: Applied Thermal Engineering - vol. 16 - n. 10
- Publication date: 1996/10
Links
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Indexing
- Themes: Absorption and adsorption systems
- Keywords: Hot gas; Calculation; Absorption system; Simulation; Performance; Thermal engine; Diesel
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Thermodynamic analysis of combined diesel engin...
- Author(s) : MOSTAFAVI M., AGNEW B.
- Date : 1997/05
- Languages : English
- Source: Applied Thermal Engineering - vol. 17 - n. 5
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Thermodynamic analysis of combined diesel engin...
- Author(s) : MOSTAFAVI M., AGNEW B.
- Date : 1996/08
- Languages : English
- Source: Applied Thermal Engineering - vol. 16 - n. 8-9
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Absorptiekoeling door uitlaatgassen en koelwater.
- Author(s) : BOUAZZAOUI S., INFANTE FERREIRA C. A., LANGRECK J., et al.
- Date : 2008/11
- Languages : Dutch
- Source: Koude & Luchtbehandeling - vol. 101 - n. 11
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Thermodynamic analysis of combined diesel engin...
- Author(s) : MOSTAFAVI M., AGNEW B.
- Date : 1997/06
- Languages : English
- Source: Applied Thermal Engineering - vol. 17 - n. 6
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Combined power and cooling, an analysis of the ...
- Author(s) : AGNEW B., TALBI M., MOSTAFAVI M.
- Date : 1999/10
- Languages : English
- Source: Applied Thermal Engineering - vol. 19 - n. 10
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