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Minor interviewing modifications were made at the 2006 site visits to increase equivalence of participant prompting.
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Increasing equivalence ratio decreased the hydrogen content but increased carbon conversion and energy efficiencies.
The model was able to predict the gas composition change with increasing equivalence ratio.
The rise time of dp/dt in a given configuration was gradually shortened with increasing equivalence ratio.
However, it does not change for methane with increasing equivalence ratio above 2.0.
Sooting region shifts upstream for ethane, propane and n-butane with increasing equivalence ratio.
Results indicate that with increasing equivalence ratio, heat recirculation efficiency decreases.
The mole fractions of CO increased in the order of increasing equivalence ratio and hence increasing flame temperature.
The normalized horizontal flame brush thickness increased with increasing axial distance from the burner exit and increasing equivalence ratio.
For increasing equivalence ratios a higher nitrogen dilution is needed in the jet for the flame to become unsteady.
At constant inlet velocity, hydrogen production increases with increasing equivalence ratio, whereas hydrogen conversion efficiency reaches its peak value around an equivalence ratio of 3.0.
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