xmlui.dri2xhtml.METS-1.0.item-contributor-funder:
Comunidad de Madrid European Commission Universidad Carlos III de Madrid
Sponsor:
This work was financed in part by the Swedish Gasification Centre (SFC) within the framework of the Centre for Indirect Gasification of Biomass (CIGB), and by the Swedish Energy Agency within the framework of project P-38347-2. This work was funded in part (receiver E. Cano-Pleite) by the CONEX-Plus program by Universidad Carlos III de Madrid, the European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant agreement No. 801538 and from Programa de Atracción de Talento (Modalidad 2) de la Comunidad de Madrid (Spain), with number 2019-T2/AMB-15938.
Project:
info:eu-repo/grantAgreement/EC/H2020/801538 Comunidad de Madrid. T2/AMB-15938
A semiempirical model for the mixing of fuel particles in a fluidized bed is presented and validated against experimental data from the literature regarding lateral fuel mixing. The model of fuel particle mixing categorizes the fluidized bed into three mixing A semiempirical model for the mixing of fuel particles in a fluidized bed is presented and validated against experimental data from the literature regarding lateral fuel mixing. The model of fuel particle mixing categorizes the fluidized bed into three mixing zones: a rising bubble wake solid zone, an emulsion zone with sinking bulk solids, and a splash zone located above the dense bed. In the emulsion zone, the axial motion of the fuel particle is described by a force balance, applying a viscoplastic stress model, i.e., with a dominant yield stress and only a minor contribution of the shear stress, using an empirical expression from the literature. In the lateral direction, the model is divided into so-called 'recirculation cells', which are crucial for the lateral mixing.
Comparisons of the modeled and measured lateral dispersion coefficients of different fuel types measured in three different large-scale fluidized bed units under both hot and cold conditions (...)[+][-]