Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement

Coating thickness protection in the burning zone of a rotary cement kiln during operation is important from the viewpoint of the kiln productivity. In this paper, an integrated model is presented to estimate the coating thickness in the burning zone of a rotary cement kiln by using measured process...

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Main Authors: Sadighi, Sepehr, Shirvani, Mansoor, Ahmad, Arshad
Format: Article
Published: Canadian Society for Chemical Engineering 2011
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Online Access:http://eprints.utm.my/id/eprint/29637/
http://dx.doi.org/10.1002/cjce.20365
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spelling my.utm.296372019-04-25T01:18:18Z http://eprints.utm.my/id/eprint/29637/ Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement Sadighi, Sepehr Shirvani, Mansoor Ahmad, Arshad TP Chemical technology Coating thickness protection in the burning zone of a rotary cement kiln during operation is important from the viewpoint of the kiln productivity. In this paper, an integrated model is presented to estimate the coating thickness in the burning zone of a rotary cement kiln by using measured process variables and scanned shell temperature. The model can simulate the variations of the system, thus the impact of different process variables and environmental conditions on the coating thickness can be analysed. The presented steady-state model derived from heat and mass balance equations uses a plug flame model for simulation of gas and/or fuel oil burning. Moreover, the heat transfer value from shell to the outside is improved by a quasi-dynamic method. Therefore, at first, the model predicts the inside temperature profile along the kiln, then by considering two resistant nodes between temperatures of the inside and outside, the latter measured by shell scanner, it estimates the formed coating thickness in the burning zone. The estimation of the model was studied for three measured data sets taken from a modern commercial cement kiln. The results confirm that the average absolute error for estimating the coating thickness for the cases 1, 2, and 3 are 3.26, 2.82, and 2.21cm, respectively. Canadian Society for Chemical Engineering 2011-02 Article PeerReviewed Sadighi, Sepehr and Shirvani, Mansoor and Ahmad, Arshad (2011) Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement. Canadian Journal of Chemical Engineering, 89 (1). pp. 116-125. ISSN 0008-4034 http://dx.doi.org/10.1002/cjce.20365 DOI:10.1002/cjce.20365
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 TP Chemical technology
spellingShingle TP Chemical technology
Sadighi, Sepehr
Shirvani, Mansoor
Ahmad, Arshad
Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement
description Coating thickness protection in the burning zone of a rotary cement kiln during operation is important from the viewpoint of the kiln productivity. In this paper, an integrated model is presented to estimate the coating thickness in the burning zone of a rotary cement kiln by using measured process variables and scanned shell temperature. The model can simulate the variations of the system, thus the impact of different process variables and environmental conditions on the coating thickness can be analysed. The presented steady-state model derived from heat and mass balance equations uses a plug flame model for simulation of gas and/or fuel oil burning. Moreover, the heat transfer value from shell to the outside is improved by a quasi-dynamic method. Therefore, at first, the model predicts the inside temperature profile along the kiln, then by considering two resistant nodes between temperatures of the inside and outside, the latter measured by shell scanner, it estimates the formed coating thickness in the burning zone. The estimation of the model was studied for three measured data sets taken from a modern commercial cement kiln. The results confirm that the average absolute error for estimating the coating thickness for the cases 1, 2, and 3 are 3.26, 2.82, and 2.21cm, respectively.
format Article
author Sadighi, Sepehr
Shirvani, Mansoor
Ahmad, Arshad
author_facet Sadighi, Sepehr
Shirvani, Mansoor
Ahmad, Arshad
author_sort Sadighi, Sepehr
title Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement
title_short Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement
title_full Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement
title_fullStr Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement
title_full_unstemmed Rotary cement kiln coating estimator: Integrated modelling of kiln with shell temperature measurement
title_sort rotary cement kiln coating estimator: integrated modelling of kiln with shell temperature measurement
publisher Canadian Society for Chemical Engineering
publishDate 2011
url http://eprints.utm.my/id/eprint/29637/
http://dx.doi.org/10.1002/cjce.20365
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score 13.160551