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Prescribed fire behavior (flame length, flaming zone depth) and effects (bole char, crown scorch) were similar across all three burned treatments.
Two correlations for hydrogen jet flame length are compared.
The latter process resulted in calibration against flame length as it was difficult to obtain a simultaneous calibration against both rate of spread and flame length.
The flame length is well validated with three empirical correlations.
Heskestad correlation can give a good prediction of flame length for transversely spaced pools.
The increase in oxygen temperature was associated with a decrease in the flame length.
Visible flame emission was recorded on video to evaluate flame length and structure.
Temperature, emissions, visible flame length, thermal efficiency as well as combustion efficiency were evaluated.
One approach (Sandia National Laboratories) correlates the dimensionless flame length with the flame Froude number, and another (UU) associates the flame length with a new similarity group, which is a product of mass flow rate and nozzle diameter.
In fact, the flame length is directly related to the fuel evaporation rate essentially, hence, the cross wind and fuel spacing will affect the flame length by changing fuel evaporation and burning rate.
The flame length results show that lower-pressure engineering correlations, based on the Froude number and a non-dimensional flame length, also apply to releases up to 413 bar (6000 psi).
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