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首页> 外文期刊>International Journal of Turbo and Jet Engines >Effect of Soot Particles on Supersonic Rocket Plume Properties
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Effect of Soot Particles on Supersonic Rocket Plume Properties

机译:烟尘颗粒对超音速火箭羽流特性的影响

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Plumes from hydrocarbon-fueled rockets usually contain some amount of soot. In spite of the small amount, such soot particles can play a critical role in the characteristics of the infrared radiation emission since soot radiates a continuous, near-blackbody spectrum. The contribution of the soot to the plume radiation depends on the amount of soot, the physical properties of the particles, their concentration, and their temperature distribution in the flow field. The trajectories of solid particles and their temperatures can differ from those of the gas due to the particle mechanical and thermal inertia. CFD FLUENT code for solving two-phase Navier-Stokes equations coupled with chemical reactions and soot particle combustion was applied for exhaust plume simulations. Exhaust plumes with soot mass loading of 2% were simulated for three altitudes of 2 km, 8 km and 16 km. Radial distributions of the cloud particle density were obtained for different distances downstream the exhaust nozzle. As a result of the particle deceleration at the boundary layer inside the nozzle the particle concentration increased at the plume periphery. The particle temperature was higher than the gaseous temperature of the plume. The temperature difference between the soot particle and gas along corresponding trajectories was about 5-10%. The infrared radiation from the plumes with carbon soot was calculated. Its intensity was found to be dependent on the particle distribution in the plume.
机译:碳氢燃料火箭产生的羽状物通常含有一定数量的烟灰。尽管数量很少,但由于烟灰会辐射连续的近黑体光谱,因此此类烟灰颗粒仍可在红外辐射发射特性中发挥关键作用。烟尘对烟羽辐射的贡献取决于烟尘的量,颗粒的物理性质,其浓度以及它们在流场中的温度分布。由于颗粒的机械惯性和热惯性,固体颗粒的轨迹及其温度可能与气体的轨迹不同。用于求解两相Navier-Stokes方程并结合化学反应和烟尘颗粒燃烧的CFD FLUENT代码用于排气羽流模拟。在2 km,8 km和16 km的三个高度上模拟了烟灰质量负荷为2%的排气羽流。对于排气喷嘴下游的不同距离,获得了云颗粒密度的径向分布。由于在喷嘴内部的边界层处的颗粒减速,因此在羽流外围的颗粒浓度增加。颗粒温度高于羽流的气体温度。烟灰颗粒和气体之间沿相应轨迹的温度差约为5-10%。计算了来自带有碳烟灰的烟羽的红外辐射。发现其强度取决于羽流中的颗粒分布。

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