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The effect of the internal reheat application on the efficiency of the 900 MW ultra-supercritical coal-fired power unit

The effect of the internal reheat application on the efficiency of the 900 MW ultra-supercritical... The effect of the internal reheat application on the efficiency of the 900 MW ultra-supercritical coal-fired power unit The paper presents a thermal-economic analysis of a 900 MW coal-fired power unit for ultra-supercritical parameters with internal steam reheat. The subject of the study was the cycle proposed as the "initial thermal cycle structure" during the completion of the project "Advanced Technologies for Energy Generation" with the steam parameters of 650/670 °C/30 MPa. Two configurations of internal reheat were analysed: with a four- and seven-section exchanger. The effect of reheat on the operation of the power unit under a partial load was also analysed, and preliminary calculations of the heat exchange area of the internal reheat were made. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Archives of Thermodynamics de Gruyter

The effect of the internal reheat application on the efficiency of the 900 MW ultra-supercritical coal-fired power unit

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Publisher
de Gruyter
Copyright
Copyright © 2011 by the
ISSN
1231-0956
eISSN
2083-6023
DOI
10.2478/v10173-011-0018-0
Publisher site
See Article on Publisher Site

Abstract

The effect of the internal reheat application on the efficiency of the 900 MW ultra-supercritical coal-fired power unit The paper presents a thermal-economic analysis of a 900 MW coal-fired power unit for ultra-supercritical parameters with internal steam reheat. The subject of the study was the cycle proposed as the "initial thermal cycle structure" during the completion of the project "Advanced Technologies for Energy Generation" with the steam parameters of 650/670 °C/30 MPa. Two configurations of internal reheat were analysed: with a four- and seven-section exchanger. The effect of reheat on the operation of the power unit under a partial load was also analysed, and preliminary calculations of the heat exchange area of the internal reheat were made.

Journal

Archives of Thermodynamicsde Gruyter

Published: Dec 1, 2011

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