PG-EAM - Programa de Pós-Graduação em Engenharia Aeronáutica e Mecânica
EN PT
Artigo 2020

Experimental laminar burning velocity of syngas from fixed-bed downdraft biomass gasifiers

Autores

Oliveira, Guthman Palandi
Sbampato, Maria Esther
Santos, Leila Ribeiro
Barreta, Luiz Gilberto

Renewable Energy , vol. 153 , pp. 1251-1260

ISSN: 09601481

15
Citações
6
Autores

Resumo

© 2020 Elsevier LtdLaminar burning velocity is considered as being one of the fundamental properties of a premixed flame and reliable data are constantly required for practical applications. Although it is possible to find an extensive amount of experimental laminar burning velocity data for fuels containing one or two components, data for fuels with three or more components are scarce. The goal of this study is to help fill this gap by providing experimental laminar burning velocity data for a fuel mixture with five components (H2:CO:CO2:CH4:N2). The fuel composition utilized is proposed as surrogates of the fuel provided by a downdraft gasifier, the most common and the most efficient type of gasifier. Experimental measurements were carried out for different fuel-to-air equivalence ratios (0.88 < ϕ < 1.74) at atmospheric conditions, 954 mbar and 298 K. The method utilized was the conical-flame surface using OH PLIF images (Planar-Laser-Induced Fluorescence imaging of OH). The area method provides a good approximation of the unstretched laminar burning velocity. Experimental data were compared with the simulated results obtained from a CHEMKIN chemical kinetics software. The highest experimental laminar flame speed of a downdraft syngas air mixture was 0.3491 m s−1 and occurred when ϕ ∼1.3.

Palavras-chave

Fixed-bed downdraft biomass gasifier Laminar burning velocity OH PLIF Syngas

Renewable Energy, Sustainability and the Environment (ENER)
: Scopus
Última atualização: 2026-06-25
: 2-s2.0-85080971061
PII: S0960148120302780