Experimentally based correction procedures for planar laser-induced fluorescence measurements of mean species concentration

被引:0
|
作者
W.P. Partridge, Jr.
N.M. Laurendeau
机构
[1] Flame Diagnostics Laboratory,
[2] School of Mechanical Engineering,undefined
[3] Purdue University,undefined
[4] West Lafayette,undefined
[5] IN 47907-1288,undefined
[6] USA,undefined
[7] Oak Ridge National Laboratory,undefined
[8] P.O. Box 2009,undefined
[9] Oak Ridge,undefined
[10] TN 37831-8087,undefined
[11] USA (Fax: +1-865/574-2102,undefined
[12] E-mail: partridgewp@ornl.gov),undefined
[13] Purdue University,undefined
[14] School of Mechanical Engineering,undefined
[15] 1288 Mechanical Engineering Bldg.,undefined
[16] West Lafayette,undefined
[17] IN 47907-1288,undefined
[18] USA (Fax: +1-765/494-0539,undefined
[19] E-mail: laurende@ecn.purdue.edu),undefined
来源
Applied Physics B | 2000年 / 71卷
关键词
PACS: 32.50.+d; 33.50.Hv; 47.70.Fw;
D O I
暂无
中图分类号
学科分类号
摘要
Experimentally-based correction procedures are demonstrated which enhance the quantitative nature of planar laser-induced fluorescence (PLIF) images for mean species concentration by correcting for the influence of the electronic quenching rate coefficient. Implementation of these methods requires only the ability to make PLIF and laser-saturated fluorescence (LSF) measurements. Though applied herein to NO, these procedures are broadly applicable both in terms of species and users. Moreover, they are generally effective regardless of the error gradients associated with spatial variations in the electronic quenching rate coefficient. In such general environments, these methods produce quenching-corrected, spatially resolved PLIF images of mean species concentration with a total uncertainty equivalent to that of a single LSF measurement.
引用
收藏
页码:237 / 245
页数:8
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