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Numerical Analysis of the Efficiency of Film Cooling of Surface Streamlined by Supersonic Disperse Flow

机译:超声波分散流动流线膜冷却效率的数值分析

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摘要

Results of numerical research of influence of inertially dropping out particles of the condensed phase on efficiency of film cooling of surface streamlined by supersonic disperse flow are given. Possibility of realization of Leontyev's paradox in the adiabatic site of a surface which is flowed round by a supersonic disperse flow, consisting in achievement of temperature of a protected surface, smaller temperature of a cooler on a permeable site of formation of a veil, is established.
机译:给出了由超声分散流动流化的缩合相结合相结合相位粒子粒子的影响的数值研究结果。建立了通过超声分散流动的表面流动的leontyev悖论的可能性,建立了通过超音速分散流动的圆形流动。建立了在接受的表面温度下,在透过的面纱形成的可渗透部位上较小的冷却器温度。 。

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