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The entrance length affects the effective flow rate that the flame sees at the base region.
The increase in this entrance length is proportional to the surface retardation factor.
Poiseuille flow is obtained within a very short entrance length, especially for low Reynolds number flows.
The entrance length predictions compare favourably with experimental data for Newtonian films.
New compact relationships are proposed to find the thermal entrance length and the cyclic fully-developed Nusselt number.
Every channel is as long as the thermal entrance length of the developing flow that resides in that channel.
Similar(32)
The comparison of the flammability boundaries and spread-rate curves for two different entrance lengths exhibits a cross-over phenomenon.
In the turbulent regime substantially developed flow occurs after eight entrance lengths and correlations with fully developed flow equations are satisfactory.
Correlations were developed to determine the thermal entrance lengths, as well as local and average Nusselt numbers for developing and fully developed laminar flow in mixed convection conditions with a constant heat flux boundary condition.
In the first part of the paper, flammability limits and spread rates in opposed flow are presented, using oxygen percentage, free-stream velocity, and flow-entrance length as parameters.
The channels at the lowest length-scale levels were considered to have their length determined by the thermal entrance-length.
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