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首页> 外文期刊>International journal of aerospace engineering >Multisized Inert Particle Loading for Solid Rocket Axial Combustion Instability Suppression
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Multisized Inert Particle Loading for Solid Rocket Axial Combustion Instability Suppression

机译:固体火箭发动机轴向燃烧不稳定性的多尺寸惰性粒子加载

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摘要

In the present investigation, various factors and trends, related to the usage of two or more sets of inert particles comprised of the same material (nominally aluminum) but at different diameters for the suppression of axial shock wave development, are numerically predicted for a composite-propellant cylindrical-grain solid rocket motor. The limit pressure wave magnitudes at a later reference time in a given pulsed firing simulation run are collected for a series of runs at different particle sizes and loading distributions and mapped onto corresponding attenuation trend charts. The inert particles’ presence in the central core flow is demonstrated to be an effective means of instability symptom suppression, in correlating with past experimental successes in the usage of particles. However, the predicted results of this study suggest that one needs to be careful when selecting more than one size of particle for a given motor application.
机译:在本研究中,对复合材料在数值上预测了与使用两组或更多组包含相同材料(名义上为铝)但直径不同的惰性颗粒有关的各种因素和趋势,以抑制轴向冲击波的产生。推进剂圆柱状固体火箭发动机。在给定的脉冲点火模拟运行中,在随后的参考时间处的极限压力波幅值将针对一系列在不同粒径和负载分布下的运行进行收集,并映射到相应的衰减趋势图上。惰性粒子在核心堆芯流中的存在被证明是抑制不稳定性症状的有效手段,与过去使用粒子的实验成功相关。但是,这项研究的预测结果表明,对于给定的电机应用,选择多于一种尺寸的颗粒时需要小心。

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