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In a two-stage ignition event, the influence of the stratification is primarily reflected in the second stage of ignition.
The influence of toluene on the temperature coefficient of the first stage of ignition of isooctane cannot be accounted for by the current theories of low-temperature autoignition.
A modified approach to the Livengood Wu integral is presented to capture the integrated effects of the compression stroke on the potential for using the first stage of ignition to distribute heat release.
Emphasis is placed on the fact that the effect of layered silicates is beneficial mostly for retarding flame spread in developing fires, but not at the stage of ignition or in the case of fully developed fires.
It appears that the knock observed in a rapid compression machine (and hence during CAI) originates from the localized development of the hot stage of ignition, often from near the combustion chamber walls.
The high-temperature stage of ignition establishes edge flames that have a hybrid premixed/autoignition flame structure similar to that previously observed for lifted laminar flames at similar thermochemical conditions.
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The traditional first-stage of ignition can be divided into two stages (stage-1A and stage-1B).
The results with 'crevice containment' show significant improvement in the fidelity of zero-dimensional modeling in terms of predicting the overall ignition delay and pressure rise in the first-stage of ignition.
Maps of ignition phasing and heat release were created as a function of pressure and temperature to indicate the change in reactivity (defined by the first and second stages of ignition) as a function of state conditions as well as the fraction of heat release associated with the two stages of ignition.
The time-scale of 3 µs to 1 ms associated with the flame-kernel evolution stage of an ignition event is targeted in this work.
The two-stage regime of ignition in the Al H2O reacting system was revealed both when the aluminum is in the liquid phase and when it comes into steam environment in the gas phase.
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