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ignition mass flux normalised.
ignition mass flux.
ignition mass flux uncertainty.
ignition mass flux variation normalised.
ignition mass flux relational coefficient.
ignition mass flux variation relational coefficient.
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The calculated ignition times and mass loss rates at ignition are compared to those measured experimentally in a laboratory-scale combustion wind tunnel.
Measurements of temperature distribution at different depths of material, ignition time and mass loss rate were implemented in the tests to examine the effects of time-dependent heat fluxes.
By using the duration from ignition to 70% mass fraction burnt (MFB0−70%) as an explanatory variable, the hypothesis that "knocking cycles are the cycles with shorter MFB duration when they are compared with normal cycles" is proposed.
The code simulates two stages of sodium droplet combustion in the air using reaction rate based pre-ignition model and mass transfer based vapour phase combustion model to predict the ignition and combustion of individual sodium droplets.
Results also show that both the sample density and thickness have a negligible influence on the ignition probability and mass-loss ratio.
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