Skip to main navigation
Skip to search
Skip to main content
Princeton University Home
Help & FAQ
Link opens in a new tab
Search content at Princeton University
Home
Profiles
Research units
Facilities
Projects
Research output
Press/Media
Pulsating instability in rich hydrogen/Air counterflow flames
C. J. Sung
,
C. K. Law
Research output
:
Contribution to conference
›
Paper
›
peer-review
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Pulsating instability in rich hydrogen/Air counterflow flames'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Counterflow Flame
100%
Critical Strain
33%
Detailed Chemistry
33%
Equivalence Ratio
33%
Extinction Limit
66%
Extinction Strain Rate
33%
Flame Temperature
33%
Flammable Range
33%
Hydrogen-air Mixture
100%
Lewis number
66%
Mode Change
33%
Oscillation
33%
Oscillation Period
33%
Period Doubling
33%
Propagation Mode
33%
Pulsating Flames
33%
Pulsating Instability
100%
Pulsation
100%
Pulsation Modes
33%
Quasi-steady
33%
Radiative Heat Loss
33%
Rich Mixture
33%
Small Strain
33%
Steady Burning
33%
Steady State
33%
Strain Rate
100%
Unsteady Flames
33%
Value-based
33%
Physics
Chemistry
20%
Flame Temperature
20%
Hydrogen
100%
Lewis Number
40%
Period Doubling
20%
Pulsation Modes
20%
Steady State
20%
Strain Rate
100%
Transportation
20%