Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process Control

Biomass combustion plants in Norway are facing stricter emission regulations and lower profitability, mostly due to low energy prices. Hence, performance optimization through improved combustion process control and/or retrofitting becomes very attractive to existing plants. However, the trial and er...

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Main Authors: R. Khalil, A. Malik, X. Ku, O. Skreiberg, M. Fossum, M. Becidan, T. Lovas
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2016-06-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/3172
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spelling doaj-baf48b3b269741b4bbdd1f649029b6532021-02-19T21:08:07ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162016-06-015010.3303/CET1650015Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process ControlR. KhalilA. MalikX. KuO. SkreibergM. FossumM. BecidanT. LovasBiomass combustion plants in Norway are facing stricter emission regulations and lower profitability, mostly due to low energy prices. Hence, performance optimization through improved combustion process control and/or retrofitting becomes very attractive to existing plants. However, the trial and error approach usually applied by the plant operator is time and cost consuming, and offers no guarantee of success. Increased combustion process knowledge on the other hand has the potential to provide the necessary input to improved combustion control strategies. The outcome of the improved control strategies can be lower emission levels, improved efficiencies, increased plant capacity or/and reduced maintenance costs. In this study, a measurement campaign was carried out at a 10 MW grate fired plant burning wood briquettes. The aim of the measurement campaign was to map the concentrations of a number of gaseous species inside the combustion chamber, at different locations and at varying operating conditions. Together with continuously measured flue gas concentrations and plant operational data, the measurements provide valuable information for combustion control strategies as well as for validation of modelling approaches, or input to these. Computational Fluid Dynamics (CFD) is the ultimate design tool for bioenergy plant combustion and heat transfer sections, however, cost-effective sub-models need to be developed. The measurement campaign carried out provides useful data for CFD modelling of the plant, both for modelling of the fuel bed, the freeboard and flue gas emission levels.https://www.cetjournal.it/index.php/cet/article/view/3172
collection DOAJ
language English
format Article
sources DOAJ
author R. Khalil
A. Malik
X. Ku
O. Skreiberg
M. Fossum
M. Becidan
T. Lovas
spellingShingle R. Khalil
A. Malik
X. Ku
O. Skreiberg
M. Fossum
M. Becidan
T. Lovas
Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process Control
Chemical Engineering Transactions
author_facet R. Khalil
A. Malik
X. Ku
O. Skreiberg
M. Fossum
M. Becidan
T. Lovas
author_sort R. Khalil
title Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process Control
title_short Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process Control
title_full Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process Control
title_fullStr Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process Control
title_full_unstemmed Detailed Operational Mapping of a Grate Fired Biomass Combustion Plant for Improved Combustion Process Control
title_sort detailed operational mapping of a grate fired biomass combustion plant for improved combustion process control
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2016-06-01
description Biomass combustion plants in Norway are facing stricter emission regulations and lower profitability, mostly due to low energy prices. Hence, performance optimization through improved combustion process control and/or retrofitting becomes very attractive to existing plants. However, the trial and error approach usually applied by the plant operator is time and cost consuming, and offers no guarantee of success. Increased combustion process knowledge on the other hand has the potential to provide the necessary input to improved combustion control strategies. The outcome of the improved control strategies can be lower emission levels, improved efficiencies, increased plant capacity or/and reduced maintenance costs. In this study, a measurement campaign was carried out at a 10 MW grate fired plant burning wood briquettes. The aim of the measurement campaign was to map the concentrations of a number of gaseous species inside the combustion chamber, at different locations and at varying operating conditions. Together with continuously measured flue gas concentrations and plant operational data, the measurements provide valuable information for combustion control strategies as well as for validation of modelling approaches, or input to these. Computational Fluid Dynamics (CFD) is the ultimate design tool for bioenergy plant combustion and heat transfer sections, however, cost-effective sub-models need to be developed. The measurement campaign carried out provides useful data for CFD modelling of the plant, both for modelling of the fuel bed, the freeboard and flue gas emission levels.
url https://www.cetjournal.it/index.php/cet/article/view/3172
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