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Numerical study of the start-up process in an optimized rocket nozzle

机译:优化火箭喷嘴启动过程的数值研究

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This work is to analyze the start-up process of the subscale optimized J2-S rocket nozzle by means of axisymmetric time-accurate Reynolds Averaged Navier-Stokes simulations. Specifically, the phenomena of the FSS → RSS transition (from fully separated to reattached flow), onset of backflow on the nozzle axis and opening of the separation bubble are investigated. Numerical predictions show a remarkable good agreement with experimental data. In particular, the FSS → RSS transition is correctly captured by axisymmetric modelling. The analysis of the flowfield across the shock pattern leads to a simple criterion for the FSS → RSS transition to occur. Furthermore, a mechanism and criterion for the appearance of backflow on the axis is suggested.
机译:这项工作是通过轴对称时间精确的雷诺平均Navier-Stokes模拟来分析优化过的小型J2-S火箭喷嘴的启动过程。具体来说,研究了FSS→RSS过渡(从完全分离到重新附着的流动),喷嘴轴上回流的开始以及分离气泡的开放现象。数值预测表明与实验数据有很好的一致性。特别是,FSS→RSS过渡可通过轴对称建模正确捕获。对整个激波模式的流场的分析导致了FSS→RSS过渡发生的简单标准。此外,提出了在轴上出现回流的机理和判据。

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