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Suitability of Detached Eddy Simulation in Overflow for Predicting Environments near Supersonic Jets

机译:分离涡流在溢流中对超音速喷气机附近环境预测的适用性

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This study was done to determine suitability of the detached eddy simulation (DES) model in OVERFLOW for numerical simulations of supersonic jet plumes. First, the DES model as implemented in OVERFLOW was tested by simulating the canonical case of a super-critical cylinder in crossflow. The DES model matched experimental data better than traditional unsteady Reynolds averaged Navier Stokes (URANS) models for this case. The DES model was also used to simulate a Mach 2.2 perfectly expanded jet. The mean flow field for this case matched experimental data at least as well as a RANS model. Acoustic waves caused by turbulent fluctuations in the jet were observed, and quantitative investigation of the acoustic field of similar jets is planned. Finally, a Mach 2 jet was simulated at various temperature ratios. This case includes a solid body in the near field of the jet which experiences surface pressure fluctuations. The trends predicted by this model are in reasonable agreement with published experimental data.
机译:进行这项研究是为了确定超涡流羽流数值模拟中超涡流中的分离涡流模拟(DES)模型的适用性。首先,通过模拟横流中超临界圆柱体的典型情况,测试了在OVERFLOW中实现的DES模型。在这种情况下,DES模型比传统的非稳态雷诺平均Navier Stokes(URANS)模型更好地匹配了实验数据。 DES模型还用于模拟2.2马赫的完美扩展射流。这种情况下的平均流场至少与实验数据以及RANS模型相匹配。观察到由射流的湍流波动引起的声波,并计划对类似射流的声场进行定量研究。最后,在不同的温度比下模拟了2马赫射流。这种情况在射流的近场中包括一个固体,该固体经历表面压力波动。该模型预测的趋势与已发布的实验数据基本吻合。

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