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首页> 外文期刊>Journal of Fluid Mechanics >Driving and damping mechanisms for transverse combustion instabilities in liquid rocket engines
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Driving and damping mechanisms for transverse combustion instabilities in liquid rocket engines

机译:液体火箭发动机横向燃烧型恒定燃烧不含动力的驱动和阻尼机构

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摘要

This work presents the analysis of a transverse combustion instability in a reduced scale rocket engine. The study is conducted on a time-resolved database of three-dimensional fields obtained via large-eddy simulation. The physical mechanisms involved in the response of the coaxial hydrogen/oxygen flames are discussed through the analysis of the Rayleigh term in the disturbance-energy equation. The interaction between acoustics and vorticity, also explicit in the disturbance energy balance, is shown to he the main damping mechanism for this instability. The relative contributions of Rayleigh and damping terms, depending on the position of the flame with respect to the acoustic field, are discussed. The results give new insight into the phenomenology of transverse combustion instabilities. Finally, the applicability of spectral analysis on the nonlinear Rayleigh and dissipation terms is discussed.
机译:该工作介绍了在减小的火箭发动机中横向燃烧不稳定性的分析。 该研究在通过大涡模拟获得的三维字段的时间分辨数据库上进行。 通过在扰动 - 能量方程中的瑞利术语分析来讨论同轴氢/氧气火焰响应的物理机制。 声学和涡度之间的相互作用,也明确在干扰能量平衡中,这将显示出这种不稳定的主要阻尼机构。 讨论了瑞利和阻尼术语的相对贡献,这取决于火焰相对于声场的位置。 结果为横向燃烧不稳定性的现象学提供了新的洞察。 最后,讨论了谱分析对非线性瑞利和耗散术语的适用性。

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