Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler

In this work, an integrated numerical model combining combustion and fluid heating was established for a 660 MW coal-fired boiler. To validate the accuracy of the developed model, related experiment was also conducted, and shows that the relative errors (REs) of several predicted parameters on both...

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Main Authors: Yu Cong, Yu Haiquan, Hu Wenpeng, Wu Hanlin
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/54/e3sconf_icaeer2020_01022.pdf
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spelling doaj-359ecd9315e74c3f8fa45f0b47b352662021-04-02T14:42:44ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011940102210.1051/e3sconf/202019401022e3sconf_icaeer2020_01022Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boilerYu Cong0Yu Haiquan1Hu Wenpeng2Wu Hanlin3Jianghan University, School of Intelligent ManufacturingSoutheast University, School of Energy and EnvironmentWuhan Hengxintai Oil Production Equipment Manufacturing Co., Ltd.Jianghan University, School of Intelligent ManufacturingIn this work, an integrated numerical model combining combustion and fluid heating was established for a 660 MW coal-fired boiler. To validate the accuracy of the developed model, related experiment was also conducted, and shows that the relative errors (REs) of several predicted parameters on both flue-gas side and water-steam side of the boiler are less than 7 %, which meets the requirement of analysis. The results indicate that the effect of SOFA tilt angle on gas temperature deviation (GTD) is greatest, and that of SOFA’s proportion follows; while GTD presents a smallest sensitivity to the concentration of O2. This is because O2 concentration mainly affects the average value of the gas temperature, but barely changes its distribution. By contrast, altering SOFA’s tilt angle and its proportion directly varies the shape, location, and area of the high-temperature and low-temperature regions at the entrance profile of the horizontal crossover pass, so these two factors play a more important role in the variation of GTD.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/54/e3sconf_icaeer2020_01022.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Yu Cong
Yu Haiquan
Hu Wenpeng
Wu Hanlin
spellingShingle Yu Cong
Yu Haiquan
Hu Wenpeng
Wu Hanlin
Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler
E3S Web of Conferences
author_facet Yu Cong
Yu Haiquan
Hu Wenpeng
Wu Hanlin
author_sort Yu Cong
title Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler
title_short Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler
title_full Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler
title_fullStr Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler
title_full_unstemmed Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler
title_sort sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description In this work, an integrated numerical model combining combustion and fluid heating was established for a 660 MW coal-fired boiler. To validate the accuracy of the developed model, related experiment was also conducted, and shows that the relative errors (REs) of several predicted parameters on both flue-gas side and water-steam side of the boiler are less than 7 %, which meets the requirement of analysis. The results indicate that the effect of SOFA tilt angle on gas temperature deviation (GTD) is greatest, and that of SOFA’s proportion follows; while GTD presents a smallest sensitivity to the concentration of O2. This is because O2 concentration mainly affects the average value of the gas temperature, but barely changes its distribution. By contrast, altering SOFA’s tilt angle and its proportion directly varies the shape, location, and area of the high-temperature and low-temperature regions at the entrance profile of the horizontal crossover pass, so these two factors play a more important role in the variation of GTD.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/54/e3sconf_icaeer2020_01022.pdf
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AT yuhaiquan sensitivityanalysisofseveraloperationalparametersongastemperaturedeviationinatangentialfiringboiler
AT huwenpeng sensitivityanalysisofseveraloperationalparametersongastemperaturedeviationinatangentialfiringboiler
AT wuhanlin sensitivityanalysisofseveraloperationalparametersongastemperaturedeviationinatangentialfiringboiler
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