27th Aerospace Sciences Meeting · 1989 · 37 citations · 2 references
Radiative Heat TransferHeat Transfer ProcessEngineeringConduction FluxesMicrogravity Flame SpreadNumerical SimulationOpposed FlowRadiative Heat LossThermodynamicsNatural ConvectionHeat TransferThermal EngineeringThermal RadiationLaminar FlameHeterogeneous Combustion
The effect of radiative heat loss from the surface of a solid material burning in a zero gravity environment in an opposed flow is studied through the use of a numerical model. Radiative heat loss is found to decrease the flame spread rate, the boundary layer thickness, and pyrolysis lengths. Blowoff extinction is predicted to occur at slower opposesd flow velocities than would occur if the radiative loss is not present. The radiative heat fluxes are comparable to the conduction fluxes, indicating the significance of the surface energy loss.
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