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Soot formation in counterflow ethylene diffusion flames from 1 to 2.5 atmospheres
D. X. Du, H. Wang,
C. K. Law
Mechanical & Aerospace Engineering
High Meadows Environmental Institute
Princeton Institute for the Science and Technology of Materials
Research output
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Contribution to journal
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Article
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peer-review
19
Scopus citations
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Physics & Astronomy
acetylene
13%
air
7%
argon
9%
atmospheres
49%
counterflow
88%
diffusion flames
85%
dilution
11%
ethylene
68%
flame temperature
15%
flames
21%
nitrogen
8%
simulation
4%
soot
84%
strain rate
20%
substitutes
9%
tendencies
10%
Chemical Compounds
Acetylene
10%
Diffusion Flame
100%
Dilution
9%
Flame
30%
Fuel
19%
Pressure
40%
Simulation
7%
Soot
80%
Strain
16%
Substitution Reaction
7%
Engineering & Materials Science
Acetylene
15%
Air
6%
Argon
13%
Computer simulation
6%
Dilution
12%
Ethylene
73%
Nitrogen
10%
Soot
77%
Strain rate
21%
Substitution reactions
11%
Temperature
4%