Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy

This paper presents Exergy analysis of Supercritical Rankine cycle without reheat, single reheat and double reheat for higher power generation of modern steam power plants for 1000 MW. A computer code has been developed to estimate the steam properties using ISI steam tables. The temperature and pr...

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Main Authors: Satyanarayana, I., Gupta, A.V.S.S. Kumara Swami, Kosireddy, Govinda Rajulu
Format: Article
Language:English
Published: UiTM Press 2010
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/13733/
http://ir.uitm.edu.my/id/eprint/13733/1/AJ_I%20SATYANARAYANA%20JME%2010.pdf
id uitm-13733
recordtype eprints
spelling uitm-137332016-07-25T03:41:17Z http://ir.uitm.edu.my/id/eprint/13733/ Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy Satyanarayana, I. Gupta, A.V.S.S. Kumara Swami Kosireddy, Govinda Rajulu Thermodynamics Force and energy Electric heating. Resistance heating This paper presents Exergy analysis of Supercritical Rankine cycle without reheat, single reheat and double reheat for higher power generation of modern steam power plants for 1000 MW. A computer code has been developed to estimate the steam properties using ISI steam tables. The temperature and pressure inlet to the turbine and exhaust pressure from the turbine are identified as key parameters in this analysis. Cycle efficiency, exergy efficiency, work ratio, steam rate and heat rate has been studied. Total exergy loss and fractional exergy loss of all the components in the cycle have been analyzed. Effect of decreasing the discharge pressure in the condenser, effect of flue gas inlet and outlet temperature of the boiler and Effect of reheat pressure and number of reheats in the boiler has been studied. It is observed that both efficiencies increases more with temperature rise than pressure rise. The effects of these parameters on the exergy loss of each component have also been studied. UiTM Press 2010 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/13733/1/AJ_I%20SATYANARAYANA%20JME%2010.pdf Satyanarayana, I. and Gupta, A.V.S.S. Kumara Swami and Kosireddy, Govinda Rajulu (2010) Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy. Journal of Mechanical Engineering, 7 (1). pp. 91-107. ISSN 1823-5514
repository_type Digital Repository
institution_category Local University
institution Universiti Teknologi MARA
building UiTM Institutional Repository
collection Online Access
language English
topic Thermodynamics
Force and energy
Electric heating. Resistance heating
spellingShingle Thermodynamics
Force and energy
Electric heating. Resistance heating
Satyanarayana, I.
Gupta, A.V.S.S. Kumara Swami
Kosireddy, Govinda Rajulu
Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy
description This paper presents Exergy analysis of Supercritical Rankine cycle without reheat, single reheat and double reheat for higher power generation of modern steam power plants for 1000 MW. A computer code has been developed to estimate the steam properties using ISI steam tables. The temperature and pressure inlet to the turbine and exhaust pressure from the turbine are identified as key parameters in this analysis. Cycle efficiency, exergy efficiency, work ratio, steam rate and heat rate has been studied. Total exergy loss and fractional exergy loss of all the components in the cycle have been analyzed. Effect of decreasing the discharge pressure in the condenser, effect of flue gas inlet and outlet temperature of the boiler and Effect of reheat pressure and number of reheats in the boiler has been studied. It is observed that both efficiencies increases more with temperature rise than pressure rise. The effects of these parameters on the exergy loss of each component have also been studied.
format Article
author Satyanarayana, I.
Gupta, A.V.S.S. Kumara Swami
Kosireddy, Govinda Rajulu
author_facet Satyanarayana, I.
Gupta, A.V.S.S. Kumara Swami
Kosireddy, Govinda Rajulu
author_sort Satyanarayana, I.
title Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy
title_short Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy
title_full Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy
title_fullStr Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy
title_full_unstemmed Exergy analysis of supercritical cycle for 1000 MW power generation using without reheat, single and double reheat / I. Satyanarayana, A.V.S.S. Kumara Swami Gupta and Govinda Rajulu Kosireddy
title_sort exergy analysis of supercritical cycle for 1000 mw power generation using without reheat, single and double reheat / i. satyanarayana, a.v.s.s. kumara swami gupta and govinda rajulu kosireddy
publisher UiTM Press
publishDate 2010
url http://ir.uitm.edu.my/id/eprint/13733/
http://ir.uitm.edu.my/id/eprint/13733/1/AJ_I%20SATYANARAYANA%20JME%2010.pdf
first_indexed 2023-09-18T22:50:15Z
last_indexed 2023-09-18T22:50:15Z
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