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Evidence of Standing Waves in Arc Jet Nozzle Flow

机译:弧形喷嘴流动中驻波的证据

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Waves spawned by the nozzle in the NASA Ames 60 MW Interaction Heating Facility arc jet were experimentally observed in pressure surveys at the exit of the nozzle. The waves have been seen in past CFD simulations, but were away from the region where models were tested (for the existing nozzles). However, a recent test series with a new nozzle extension (229mm exit diameter) revealed that these waves intersect the centerline of the jet in a region where it is desirable to put test articles, and that the waves may be contributing to non-uniform recession behavior seen in Teflon? sublimation test articles tested in this new nozzle. It is reasonable to assume the ablation recession of thermal protection models will also be nonuniform due to exposure to these waves. This work shows that ablation response is sensitive to the location of test samples in the free jet relative to the location of the wave interaction, and that the issues with these waves can be avoided by choosing an optimum position for a test article in the free jet. This work describes the experimental observations along with the CFD simulations that have identified the waves emanating from the nozzle, as well as the instrumentation used to detect them. The work describes a recommended solution, derived by CFD analysis, which if implemented, should significantly reduce these flow disturbance and pressure anomalies in future nozzles.
机译:喷嘴在NASA AMES中产生的波浪20mW相互作用加热设施弧射流在喷嘴出口的压力调查中进行实验观察。在过去的CFD模拟中已经看到了波浪,但远离测试模型的区域(对于现有喷嘴)。然而,最近的测试系列具有新的喷嘴延伸(229mm出口直径),显示这些波在需要放置测试制品的区域中与射流的中心线相交,并且波浪可能有助于非均匀衰退在特氟隆看到的行为?在这个新的喷嘴中测试的升华试验制品。假设热保护模型的消融衰退是合理的,也是由于暴露于这些波而不会均匀。该工作表明,消融响应对自由喷射中的测试样品的位置相对于波相互作用的位置敏感,并且可以通过在自由喷射器中选择测试制品的最佳位置来避免这些波的问题。这项工作描述了实验观察以及已经识别从喷嘴发出的波的CFD模拟,以及用于检测它们的仪器。该工作描述了推荐的解决方案,通过CFD分析来源,如果实施,如果实施,应显着减少未来喷嘴中的这些流动障碍和压力异常。

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