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The mixture fraction is decomposed into components representing the states of the two-step chemistry.
A mixture fraction is carefully defined for evaporation and combustion of droplets and sprays.
An additional transport equation for a mixture fraction is derived for non-unity Lewis numbers.
Next, application to an inertly mixing round jet reveals that the spreading rate of the mixture fraction is correctly predicted.
Overprediction of OH near the stoichiometric mixture fraction is attributed to inaccurate prediction of the conditional scalar dissipation rate.
In particular, their effect on the mixture fraction calculation and its relationship to the experimentally determined mixture fraction is examined.
Similar(37)
The enthalpy and mixture fraction are strongly correlated.
Contour maps of all four species and mixture fraction are presented.
A clipped Gaussian PDF distribution for temperature and a β-PDF for mixture fraction are employed.
The computed PDFs of mixture fraction are compared with the presumed standard β function and modified β function.
The stoichiometric mixture fraction was found to be a useful parameter to characterize the velocity profile variation.
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