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Effect of Carbon-based Ablation Products on Hypersonic Boundary Layer Stability

机译:碳基烧蚀产物对高超声速边界层稳定性的影响

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In hypersonic vehicles, understanding the transition of the boundary layer is crucial to the design of the thermal protection system due to the significantly higher drag and heating rates of turbulent boundary layers. However, the nature of the thermal protection system can affect the stability and transition prediction of the boundary layer. Many thermal protection systems use ablation as a means of controlling vehicle temperature. These systems add new species to the boundary layer and change the chemistry of the flow. Carbon-based ablators have gained popularity due to their smooth ablative and heat transfer characteristics. The addition of carbon species, specifically CO_2, into the boundary layer of a hypersonic vehicle has known damping effects on the high frequency second mode disturbances that dominate in this flow regime. This study examines the impact of CO_2 in the boundary layer from ablation by using common gas-surface ablation models as the wall boundary condition in computational fluid dynamics simulations. The study was conducted on both blunted and sharp cone geometries. The results show that at the current concentrations of CO_2 created from the ablation models, there is limited effect of molecular damping on the stability of the boundary layer, seen only in the amplification of specific frequencies but does not contribute to an overall increase in stability. Furthermore, the geometry of the blunted nose has more on an impact on the stability due to the creation of an entropy layer which masks the effect of CO_2 damping.
机译:在高超音速飞行器中,由于湍流边界层的阻力和加热速率明显更高,因此了解边界层的过渡对于热保护系统的设计至关重要。但是,热保护系统的性质会影响边界层的稳定性和过渡预测。许多热保护系统使用消融作为控制车辆温度的手段。这些系统将新的物种添加到边界层,并改变了流的化学性质。碳基烧蚀器因其平滑的烧蚀和传热特性而广受欢迎。将碳物质,特别是CO_2添加到高超声速飞行器的边界层中,对在该流动状态下占主导地位的高频第二模式扰动具有已知的阻尼作用。本研究通过在计算流体动力学模拟中使用常见的气体表面烧蚀模型作为壁边界条件,研究了烧蚀对边界层中CO_2的影响。这项研究是针对钝角和尖角的几何形状进行的。结果表明,在当前由烧蚀模型产生的CO_2浓度下,分子阻尼对边界层稳定性的影响有限,仅在特定频率的放大中可见,但对整体稳定性没有贡献。此外,由于形成了一个熵层,掩盖了CO_2阻尼的影响,钝鼻的几何形状对稳定性有更多的影响。

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