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The tilt angle decreases with the pool diameter but weakly influenced by h0.
The two boilover characteristic parameters, boilover onset time and boilover intensity, both increase with the initial fuel layer thickness and decrease with the pool diameter.
The characteristic life-times of the extended R T instabilities increase with pool diameter while remaining smaller than the puffing life-times that scale by τ ∼ D1/2.
Knowledge of the pool diameter, pool height and spreading rate are found to be important in calculating the vaporization rates of the liquid pool.
Based on the ratio of initial fuel layer thickness to the pool diameter, prediction models for boilover onset time and boilover intensity are developed.
Similar to previously published experimental data, the predicted burning rate of flames above the acetone pools exposed to flame radiation increases with the pool diameter and approaches a constant level for large pool sizes.
Similar(36)
In both stages, the mass burning rate and the flame height increase with increasing pool diameters.
Adiabatic surface temperatures (AST) are computed for pool diameters 1.13 m and 3.4 m using the fire dynamics simulator.
Mass burning rate is measured for gasoline pool fires of pool diameters 0.3 m, 0.5 m, 0.7 m and 1.0 m.
This allowed the analysis of the transient periods at the beginning (fire development) and end (fire extinction) of the whole process, as well as the determination of the average burning rate during steady-state fire as a function of pool-fire diameter.
Plastic kiddie pools, 3' in diameter, serve as the raised beds.
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