4.6 Article

Effects of fuel stratification on ignition kernel development and minimum ignition energy of n-decane/air mixtures

期刊

PROCEEDINGS OF THE COMBUSTION INSTITUTE
卷 37, 期 2, 页码 1623-1630

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.proci.2018.05.087

关键词

Fuel stratification; Ignition; Spherical flame propagation; N-decane/air

资金

  1. National Natural Science Foundation of China [91741126, 91541204]

向作者/读者索取更多资源

Fuel-stratified combustion has broad application due to its promising advantages in extension of lean flammability limit, improvement of flame stabilization, enhancement of lean combustion, etc. In the literature, there are many studies on flame propagation in fuel-stratified mixtures. However, there is little attention on ignition in fuel-stratified mixtures. In this study, one-dimensional numerical simulation is conducted to investigate the ignition and spherical flame kernel propagation in fuel-stratified n-decane/air mixtures. The emphasis is placed on assessing the effects of fuel stratification on the ignition kernel propagation and critical ignition condition. First, ignition and flame kernel propagation in homogeneous n-decane/air mixture are studied and different flame regimes are identified. The minimum ignition energy (MIE) of the homogeneous n-decane/air mixture is obtained and it is found to be very sensitive to the equivalence ratio under fuel-lean conditions. Then, ignition and flame kernel propagation in fuel-stratified n-decane/air mixture are investigated. The inner equivalence ratio and stratification radius are found to have great impact on ignition kernel propagation. The MIEs at different fuel-stratification conditions are calculated. The results indicate that for fuel-lean n-decane/air mixture, fuel stratification can greatly promote ignition and reduce the MIE. Six distinct flame regimes are observed for successful ignition in fuel-stratified mixture. It is shown that the ignition kernel propagation can be induced by not only the ignition energy deposition but also the fuel-stratification. Moreover, it is found that to achieve effective ignition enhancement though fuel stratification, one needs properly choose the values of stratification radius and inner equivalence ratio. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.

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