Effect of using low range calory coal on electricity production cost and power plant life

Electricity power demand has continuously decreased since the beginning of COVID-19 pandemic. In Indonesia, some coal-fired power plants have been put in reserve shutdown. Plant's competitiveness can be improved with lowering the production cost. This can be done with reducing the purchasing ex...

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Main Authors: Triyono, Sugeng, Suprianto, Eko
Format: Conference or Workshop Item
Published: 2021
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Online Access:http://eprints.utm.my/id/eprint/95916/
http://dx.doi.org/10.1109/CPEEE51686.2021.9383405
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.959162022-06-29T07:53:51Z http://eprints.utm.my/id/eprint/95916/ Effect of using low range calory coal on electricity production cost and power plant life Triyono, Sugeng Suprianto, Eko TK Electrical engineering. Electronics Nuclear engineering Electricity power demand has continuously decreased since the beginning of COVID-19 pandemic. In Indonesia, some coal-fired power plants have been put in reserve shutdown. Plant's competitiveness can be improved with lowering the production cost. This can be done with reducing the purchasing expenses by using cheaper lower rank coal (LRC) at different heating values. In this study, investigation is conducted to identify the operation and maintenance effects when using LRC, especially related to the plant safety and reliability, on the existing coal power plants. It is found that burning very low coal heating value, some components facilities need to increase their load until greater than its rated capacity in order to keep the maximum rated output capacity from the plants. Other effects of increased coal load are reduced boiler combustion efficiency, decreased mill temperature and increased secondary superheater temperature. These effects will lead to potential boiler failure due to the risks of increased local hotspot and erosion of the tubes. In this study, the validation method during combustion is presented to avoid these problems. This paper reported a successful study of burning a lower coal heating value of 4600 kCal/kg (ar), on 'Plant S' with 3400 MW installed capacity. More than IDR 1.5 B have been saved by replacing the original coal of typical 5000 kcal/kg (ar) with LRC, equivalent to around 1.8 TWh power generation, during June 2020. The success of this coal switching operation can be applied in other coal-fired power plants in Java-Bali grid, to obtain a better electricity production cost. Further longer period investigation is being carried out to minimize negative impact and avoiding failure during continuous operation of LRC. 2021 Conference or Workshop Item PeerReviewed Triyono, Sugeng and Suprianto, Eko (2021) Effect of using low range calory coal on electricity production cost and power plant life. In: 11th International Conference on Power, Energy and Electrical Engineering (CPEEE), 26 February 2021 - 28 February 2021, Shiga, Japan. http://dx.doi.org/10.1109/CPEEE51686.2021.9383405
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Triyono, Sugeng
Suprianto, Eko
Effect of using low range calory coal on electricity production cost and power plant life
description Electricity power demand has continuously decreased since the beginning of COVID-19 pandemic. In Indonesia, some coal-fired power plants have been put in reserve shutdown. Plant's competitiveness can be improved with lowering the production cost. This can be done with reducing the purchasing expenses by using cheaper lower rank coal (LRC) at different heating values. In this study, investigation is conducted to identify the operation and maintenance effects when using LRC, especially related to the plant safety and reliability, on the existing coal power plants. It is found that burning very low coal heating value, some components facilities need to increase their load until greater than its rated capacity in order to keep the maximum rated output capacity from the plants. Other effects of increased coal load are reduced boiler combustion efficiency, decreased mill temperature and increased secondary superheater temperature. These effects will lead to potential boiler failure due to the risks of increased local hotspot and erosion of the tubes. In this study, the validation method during combustion is presented to avoid these problems. This paper reported a successful study of burning a lower coal heating value of 4600 kCal/kg (ar), on 'Plant S' with 3400 MW installed capacity. More than IDR 1.5 B have been saved by replacing the original coal of typical 5000 kcal/kg (ar) with LRC, equivalent to around 1.8 TWh power generation, during June 2020. The success of this coal switching operation can be applied in other coal-fired power plants in Java-Bali grid, to obtain a better electricity production cost. Further longer period investigation is being carried out to minimize negative impact and avoiding failure during continuous operation of LRC.
format Conference or Workshop Item
author Triyono, Sugeng
Suprianto, Eko
author_facet Triyono, Sugeng
Suprianto, Eko
author_sort Triyono, Sugeng
title Effect of using low range calory coal on electricity production cost and power plant life
title_short Effect of using low range calory coal on electricity production cost and power plant life
title_full Effect of using low range calory coal on electricity production cost and power plant life
title_fullStr Effect of using low range calory coal on electricity production cost and power plant life
title_full_unstemmed Effect of using low range calory coal on electricity production cost and power plant life
title_sort effect of using low range calory coal on electricity production cost and power plant life
publishDate 2021
url http://eprints.utm.my/id/eprint/95916/
http://dx.doi.org/10.1109/CPEEE51686.2021.9383405
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