Numerical simulations of the industrial circulating fluidized bed boiler under air- and oxy-fuel combustion

Measured and numerical results of air-fuel combustion process within large scale industrial circulating fluidized bed (CFB) boiler is presented in this paper. For numerical simulations the industrial compact CFB boiler was selected. Numerical simulations were carried out using three-dimensional mode...

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Veröffentlicht in:Applied thermal engineering 2015-08, Vol.87, p.127-136
Hauptverfasser: Adamczyk, Wojciech P., Kozołub, Paweł, Klimanek, Adam, Białecki, Ryszard A., Andrzejczyk, Marek, Klajny, Marcin
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Sprache:eng
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Zusammenfassung:Measured and numerical results of air-fuel combustion process within large scale industrial circulating fluidized bed (CFB) boiler is presented in this paper. For numerical simulations the industrial compact CFB boiler was selected. Numerical simulations were carried out using three-dimensional model where the dense particulate transport phenomenon was simultaneously modelled with combustion process. The fluidization process was modelled using the hybrid Euler-Lagrange approach. The impact of the geometrical model simplification on predicted mass distribution and temperature profiles over CFB boiler combustion chamber two kinds of geometrical models were used, namely the complete model which consist of combustion chamber, solid separators, external solid super-heaters and simplified boiler geometry which was reduced to the combustion chamber. The evaluated temperature and pressure profiles during numerical simulations were compared against measured data collected during boiler air-fuel operation. Collected data was also used for validating numerical model of the oxy-fuel combustion model. Stability of the model and its sensitivity on changes of several input parameters were studied. The comparison of the pressure and temperature profiles for all considered cases gave comparable trends in contrary to measured data. Moreover, some additional test was carried out the check the influence of radiative heat transfer on predicted temperature profile within the CFB boiler. [Display omitted] •Hybrid Euler-Lagrange approach was used for modelling particle transport, air- and oxy-fuel combustion process.•Numerical results were validated against measured data.•The influence of different boiler operating conditions on calculated temperature profile was investigated.•New strategy for resolving particle transport in circulating fluidized bed was shown.
ISSN:1359-4311
DOI:10.1016/j.applthermaleng.2015.04.056