Validation of a biomass conversion mechanism by Eulerian modelling of a fixed-bed system under low primary air conditions

被引:5
|
作者
Alvarez-Bermudez, Cesar [1 ]
Anca-Couce, Andres [2 ,3 ]
Chapela, Sergio [1 ]
Scharler, Robert [2 ]
Buchmayr, Markus [4 ]
Gomez, Miguel Angel [1 ]
Porteiro, Jacobo [1 ]
机构
[1] Univ Vigo, CINTECX, Grp Tecnol Energet GTE, Vigo 36310, Spain
[2] Graz Univ Technol, Inst Thermal Engn, Inffeldgasse 25-B, A-8010 Graz, Austria
[3] Carlos III Univ Madrid, Thermal & Fluids Engn Dept, Avda Univ 30, Leganes 28911, Madrid, Spain
[4] Hargassner GesmbH, Anton Hargassner Str 1, A-4952 Weng, Austria
关键词
Biomass combustion; Fixed bed; Pyrolysis; Computational fluid dynamics; Eulerian modelling; CFD SIMULATION; THERMAL-CONVERSION; STAGING STRATEGIES; GASEOUS EMISSIONS; FOULING PHENOMENA; KINETIC SCHEME; COMBUSTION; WOOD; PYROLYSIS; PARTICULATE;
D O I
10.1016/j.renene.2023.119003
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This work presents a three-dimensional Computational Fluid Dynamics study of a small-scale biomass com-bustion system operating with low primary air ratios. The Eulerian Biomass Thermal Conversion Model (EBiT-CoM) was adapted to incorporate a pyrolysis mechanism based on the detailed Ranzi-Anca-Couce (RAC) scheme. Two scenarios were simulated using woodchips with 8% and 30% moisture content, and the results were vali-dated against experimental data, including in-flame and bed measurements. The model accurately predicted bed temperature profiles and the influence of fuel moisture content on the pyrolysis and drying fronts, as well as on the distribution of volatiles and temperatures above the solid fuel bed. For the 8% moisture content case, the average gas temperature above the bed is approximately 700 degrees C, while for the 30% case, it drops to around 400 degrees C. The lower temperatures hinder the tar cracking reaction, resulting in a 25% higher tar content in the producer gas for the 30% moisture content fuel. The lower part of the bed consists of a thick layer of char un-dergoing reduction reactions, similar to that of an updraft gasifier. The developed model can accurately simulate biomass combustion systems with solid fuel beds consisting of numerous particles, while maintaining low computational requirements.
引用
收藏
页数:16
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