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Before the freely propagating flame impinges on the obstacle, the flame propagation speed remains close to the laminar burning velocity, regardless of the obstacles used.
The flame propagation speed has a negative correlation with heat loss.
A thermal model has been generated to estimate the flame propagation speed in various dust concentrations.
Spurting nitrogen and ABC powder has an obvious suppression effect on the explosion overpressure and the flame propagation speed.
The flame propagation speed without orifice plate shows the trend of initial increase and consequence decrease in the confined space.
Though these three mechanisms have nearly the same prediction of hot flame propagation speed, there are very large discrepancy in the prediction of cool flame propagation speed.
At this stage a new theoretical expression to predict the laminar spray flame propagation speed is derived.
In Part II, the proposed mechanism and flame propagation speed expression are validated by numerical simulation.
The measured upstream flame propagation speed increased with T∞, especially for heptane droplets.
The transition point is identified on the curve of flame propagation speed against stretch rate.
The explosion flame propagation speed was calculated through image processing by MATLAB.
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CEO of Professional Science Editing for Scientists @ prosciediting.com