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Transient flow field effects on soot volume fraction in diffusion flames
M. E. Decroix,
William Roberts
*
*
Corresponding author for this work
Physical Sciences and Engineering
Research output
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Contribution to journal
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Article
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peer-review
54
Scopus citations
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Dive into the research topics of 'Transient flow field effects on soot volume fraction in diffusion flames'. Together they form a unique fingerprint.
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Engineering
Flow Field
100%
Strain Rate
100%
Diffusion Flame
100%
Transients
100%
Measurement
66%
Fluctuations
66%
Initial Strain Rate
66%
Soot
66%
Amplitudes
33%
Quantitative Measurement
33%
Forcing Amplitude
33%
Forcing Frequency
33%
Counterflow
33%
Rates of Strain
33%
Flamelets
33%
Flame
33%
High Frequency
33%
Low Frequency
33%
Oscillation
33%
Physics
Flow Distribution
100%
Field Effect
100%
Volume
100%
Transients
100%
Fractions
100%
Frequencies
60%
Variations
60%
Amplitudes
40%
Strain
40%
Oscillation
20%
Incandescence
20%
Flames
20%
Air
20%
Responses
20%
Laser
20%
INIS
flames
100%
diffusion
100%
volume
100%
soot
100%
strain rate
62%
concentration
37%
fluctuations
37%
strains
25%
amplitudes
25%
chemistry
12%
comparative evaluations
12%
propane
12%
lasers
12%
air
12%
oscillations
12%