Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery System

Coupled high-low energy grade flus gas waste heat recovery systems (CWHRS) have been applied in power plants to improve unit efficiency. In this study, to evaluate the rationality of waste heat recovery, the energy-grade balance coefficient (EBC) of the CWHRS was derived using the theory of heat bal...

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Main Authors: Jiayou Liu, Fengzhong Sun
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/12/2/248
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spelling doaj-cce9bfd1cf114c4194af35ee559075232020-11-24T20:43:52ZengMDPI AGEnergies1996-10732019-01-0112224810.3390/en12020248en12020248Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery SystemJiayou Liu0Fengzhong Sun1School of Energy and Power Engineering, Shandong University, Jinan 250061, ChinaSchool of Energy and Power Engineering, Shandong University, Jinan 250061, ChinaCoupled high-low energy grade flus gas waste heat recovery systems (CWHRS) have been applied in power plants to improve unit efficiency. In this study, to evaluate the rationality of waste heat recovery, the energy-grade balance coefficient (EBC) of the CWHRS was derived using the theory of heat balance, exergy balance and energy grade balance. The inlet flue gas temperature (IFT) of the low-temperature economizer was defined as the node temperature of the CWHRS. The optimal node temperature (ONT) was optimal when the absolute value of the EBC was the smallest. The exergy efficiency and EBC of the system installed on a supercritical 600 MW unit were calculated and the result shows that the ONT of the system was about 115 °C, the ONT decreased from about 135 °C to about 113 °C when the IFT increased from 335 °C to 380 °C and the ONT decreased from about 144 °C to about 113 °C when the inlet air temperature increased from −10 °C to 35 °C. The node temperature is recommended as an adjusting parameter of CWHRS to ensure the effect of waste heat recovery.http://www.mdpi.com/1996-1073/12/2/248waste heat recovery systemenergy grade balanceenergy-grade balance coefficientnode temperature
collection DOAJ
language English
format Article
sources DOAJ
author Jiayou Liu
Fengzhong Sun
spellingShingle Jiayou Liu
Fengzhong Sun
Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery System
Energies
waste heat recovery system
energy grade balance
energy-grade balance coefficient
node temperature
author_facet Jiayou Liu
Fengzhong Sun
author_sort Jiayou Liu
title Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery System
title_short Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery System
title_full Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery System
title_fullStr Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery System
title_full_unstemmed Node Temperature of the Coupled High-Low Energy Grade Flus Gas Waste Heat Recovery System
title_sort node temperature of the coupled high-low energy grade flus gas waste heat recovery system
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-01-01
description Coupled high-low energy grade flus gas waste heat recovery systems (CWHRS) have been applied in power plants to improve unit efficiency. In this study, to evaluate the rationality of waste heat recovery, the energy-grade balance coefficient (EBC) of the CWHRS was derived using the theory of heat balance, exergy balance and energy grade balance. The inlet flue gas temperature (IFT) of the low-temperature economizer was defined as the node temperature of the CWHRS. The optimal node temperature (ONT) was optimal when the absolute value of the EBC was the smallest. The exergy efficiency and EBC of the system installed on a supercritical 600 MW unit were calculated and the result shows that the ONT of the system was about 115 °C, the ONT decreased from about 135 °C to about 113 °C when the IFT increased from 335 °C to 380 °C and the ONT decreased from about 144 °C to about 113 °C when the inlet air temperature increased from −10 °C to 35 °C. The node temperature is recommended as an adjusting parameter of CWHRS to ensure the effect of waste heat recovery.
topic waste heat recovery system
energy grade balance
energy-grade balance coefficient
node temperature
url http://www.mdpi.com/1996-1073/12/2/248
work_keys_str_mv AT jiayouliu nodetemperatureofthecoupledhighlowenergygradeflusgaswasteheatrecoverysystem
AT fengzhongsun nodetemperatureofthecoupledhighlowenergygradeflusgaswasteheatrecoverysystem
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