Energy and Exergy Analysis of a Captive Steam Powerplant | Analysis for a 43 MW Captive Steam Powerplant. Cet article n’est pas disponible.
Langue : anglais
Edité par LAP LAMBERT Academic Publishing, 2014
- Livre broché
- Neuf

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Energy and Exergy Analysis of a Captive Steam Powerplant | Analysis for a 43 MW Captive Steam Powerplant | Jignesh R. Mehta (u. a.) | Taschenbuch | 128 S. | Englisch | 2014 | LAP LAMBERT Academic Publishing | EAN 9783659588068 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu.
N° de réf. du vendeur 105099601
- Titre
- Energy and Exergy Analysis of a Captive Steam Powerplant | Analysis for a 43 MW Captive Steam Powerplant
- Auteur
- Jignesh R. Mehta (u. a.)
- Éditeur
- LAP LAMBERT Academic Publishing
- Année de publication
- 2014
- État de l'article
- Neu
- Reliure
- Taschenbuch
- Langue
- anglais
- ISBN à 10 chiffres
- 3659588067
- ISBN à 13 chiffres
- 9783659588068
- Poids de l'article
- 209 grammes
- Dimensions
- 220 x 150 x 9 mm
- Catalogues du vendeur
- Bücher
The fossil fuel stocks are limited and create pollution when consumed. We need to use them very rationally. Energy has quality as per second law of thermodynamics. Exergy analysis gives insight into quality of energy (exergy) lost in a given system. Exergy analysis focuses on magnitude and true location of energy loss. More effort need to be applied to place where there is more exergy destruction. This work is an energy and exergy analysis of a 43 MW captive co-generation steam power plant at a chemical plant. The co-generation plant produces power and steam from turbine can be used for process heating. Energy and exergy analysis is carried out for all individual components of the plant like boiler, turbine, condenser etc. Major exergy destruction is seen in combustor and heat recovery system. Frequent soot blowing and excess air control are recommended to improve performance of this plant. This can improve boiler efficiency by 2.2% and also reduce environmental emissions significantly. It is recommended to operate plant at high maximum continuous rating (MCR) for higher exergy efficiency of turbine.
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Présentation de l'éditeur
The fossil fuel stocks are limited and create pollution when consumed. We need to use them very rationally. Energy has quality as per second law of thermodynamics. Exergy analysis gives insight into quality of energy (exergy) lost in a given system. Exergy analysis focuses on magnitude and true location of energy loss. More effort need to be applied to place where there is more exergy destruction. This work is an energy and exergy analysis of a 43 MW captive co-generation steam power plant at a chemical plant. The co-generation plant produces power and steam from turbine can be used for process heating. Energy and exergy analysis is carried out for all individual components of the plant like boiler, turbine, condenser etc. Major exergy destruction is seen in combustor and heat recovery system. Frequent soot blowing and excess air control are recommended to improve performance of this plant. This can improve boiler efficiency by 2.2% and also reduce environmental emissions significantly. It is recommended to operate plant at high maximum continuous rating (MCR) for higher exergy efficiency of turbine.
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