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A Computational Study on Flame-Solid Radiative Interaction in Flame Spread Over Thin Solid-Fuel

机译:薄固体燃料上火焰传播中火焰固相辐射相互作用的计算研究

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A detailed, two-dimensional, laminar, flame spread model over a thin solid is solved in both a normal gravity downward spread configuration and in a microgravity quiescent atmosphere configuration. The radiation transfer equation is solved using discrete ordi-nates methods. While flame radiation plays only a secondary role in normal gravity spread, it is crucial in microgravity. By using the solid fuel total emittance and total absorptance as parameters, systematic computations have been performed to isolate the roles of flame radiative loss to the ambient, absorption of flame radiation by the solid and solid emission. Computations show that depending on the values of the solid radiation parameters, trend reversals in spread rate and extinction limits between flames in normal gravity and in microgravity can occur.
机译:在法向重力向下扩散配置和微重力静态大气配置下,都可以求解薄固体上的详细的二维层流火焰扩散模型。辐射传递方程使用离散有机物法求解。尽管火焰辐射在正常重力传播中仅扮演次要角色,但在微重力中却至关重要。通过使用固体燃料的总发射率和总吸收率作为参数,已经进行了系统的计算,以隔离火焰辐射对周围环境的损失,固体和固体辐射吸收火焰辐射的作用。计算表明,取决于固体辐射参数的值,在法向重力和微重力下,火焰传播速度和熄灭极​​限的趋势会发生逆转。

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