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Experimental study of the dynamics and structure of self-sustaining premixed cool flames using a counterflow burner
Christopher B. Reuter
, Sang Hee Won
,
Yiguang Ju
Mechanical & Aerospace Engineering
High Meadows Environmental Institute
Research output
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Contribution to journal
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Article
›
peer-review
109
Scopus citations
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Dive into the research topics of 'Experimental study of the dynamics and structure of self-sustaining premixed cool flames using a counterflow burner'. Together they form a unique fingerprint.
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Keyphrases
Counterflow Burner
100%
Self-sustaining
100%
Cool Flame
100%
Premixed Cool Flame
100%
Extinction Limit
71%
Flame Extinction
57%
Fuel Concentration
42%
Ignition Limit
28%
Equivalence Ratio
28%
Low Temperature
14%
Flame Speed
14%
Detailed Chemical Kinetics
14%
Hysteresis
14%
New Platform
14%
Flame Structure
14%
Numerical Calculation
14%
Strain Rate
14%
Ozone Addition
14%
Chemical Kinetic Model
14%
Low-temperature Chemistry
14%
Dimethyl Ether
14%
Flame Dynamics
14%
Planar Laser-induced Fluorescence
14%
Experimental Validation
14%
Near-limit
14%
Ether Oxygen
14%
Numerical Prediction
14%
Speed Dependence
14%
Quantitative Measurement
14%
Near-limit Flame
14%
Laboratory Setting
14%
Engineering
Numerical Prediction
33%