Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD Simulation

This paper evaluates the combustion process of solid biomass fuel in a 1 MW grate furnace by using data obtained from a real unit and mathematical modelling tools. Investigated grate furnace consists of combustion chamber with continuous feeding and heat exchanger. The combustion chamber is equipped...

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Main Authors: J. Hájek, T. Jurena
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2012-09-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/7121
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spelling doaj-dbaddd036fa946f89882616d3f11aad32021-02-22T21:03:59ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162012-09-012910.3303/CET1229125Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD SimulationJ. HájekT. JurenaThis paper evaluates the combustion process of solid biomass fuel in a 1 MW grate furnace by using data obtained from a real unit and mathematical modelling tools. Investigated grate furnace consists of combustion chamber with continuous feeding and heat exchanger. The combustion chamber is equipped with multiple primary, secondary and tertiary air inlets. Combustion air is distributed into four areas, two under and two above the grate bed. Temperature is monitored inside the combustion chamber by three thermocouples and gaseous combustion products are analysed in the stack. The present mathematical model is based on an assessment of existing simplified approaches to the fixed bed modelling, see e.g. (Johansson et al. 2007; Frey et al. 2003). This approach means that the process may be simulated without specialised bed simulation software using the tools available in commercial CFD software. The discussed approaches differ mainly by the complexity of treatment of the solid fuel layer, but also by the degree of interaction between the fixed bed and the freeboard region.https://www.cetjournal.it/index.php/cet/article/view/7121
collection DOAJ
language English
format Article
sources DOAJ
author J. Hájek
T. Jurena
spellingShingle J. Hájek
T. Jurena
Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD Simulation
Chemical Engineering Transactions
author_facet J. Hájek
T. Jurena
author_sort J. Hájek
title Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD Simulation
title_short Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD Simulation
title_full Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD Simulation
title_fullStr Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD Simulation
title_full_unstemmed Modelling of 1 MW Solid Biomass Combustor: Simplified Balance-Based Bed Model Coupled with Freeboard CFD Simulation
title_sort modelling of 1 mw solid biomass combustor: simplified balance-based bed model coupled with freeboard cfd simulation
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2012-09-01
description This paper evaluates the combustion process of solid biomass fuel in a 1 MW grate furnace by using data obtained from a real unit and mathematical modelling tools. Investigated grate furnace consists of combustion chamber with continuous feeding and heat exchanger. The combustion chamber is equipped with multiple primary, secondary and tertiary air inlets. Combustion air is distributed into four areas, two under and two above the grate bed. Temperature is monitored inside the combustion chamber by three thermocouples and gaseous combustion products are analysed in the stack. The present mathematical model is based on an assessment of existing simplified approaches to the fixed bed modelling, see e.g. (Johansson et al. 2007; Frey et al. 2003). This approach means that the process may be simulated without specialised bed simulation software using the tools available in commercial CFD software. The discussed approaches differ mainly by the complexity of treatment of the solid fuel layer, but also by the degree of interaction between the fixed bed and the freeboard region.
url https://www.cetjournal.it/index.php/cet/article/view/7121
work_keys_str_mv AT jhajek modellingof1mwsolidbiomasscombustorsimplifiedbalancebasedbedmodelcoupledwithfreeboardcfdsimulation
AT tjurena modellingof1mwsolidbiomasscombustorsimplifiedbalancebasedbedmodelcoupledwithfreeboardcfdsimulation
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