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Diode-laser-based near-resonantly enhanced flow visualization in shock tunnels

机译:冲击隧道中基于二极管激光的近共振增强流可视化

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摘要

Two new near-resonantly enhanced flow visualization techniques suitable for hypersonic low-density flows in shock or arc tunnels have been developed using seeded lithium (Li) metal as the refractivity-enhancing species. Two semiconductor lasers, single-longitudinal-mode and multimode, are compared with respect to their suitability as light sources for the technique. Transient wake-flow structures around a cylinder and a model of a planetary entry vehicle are visualized to demonstrate the capabilities of this comparatively inexpensive and simple visualization system. The images show flow features which are undetectable with conventional schlieren, shadowgraph, or interferometry techniques. Furthermore, the effect of density inhomogeneities along the line-of-sight outside the region of interest can be reduced by enhancing the refractivity only in selected parts of the flowfield.
机译:已经开发了两种适用于冲击或电弧隧道中高超声速低密度流的近共振增强流可视化技术,其中使用了种子金属锂(Li)作为增强折射率的物质。比较了两个半导体激光器(单纵模和多模)作为该技术光源的适用性。围绕圆柱体的瞬态尾流结构和行星进入车辆的模型被可视化,以展示该相对便宜且简单的可视化系统的功能。图像显示了用常规刻纹笔,阴影图或干涉技术无法检测到的流动特征。此外,可以通过仅在流场的选定部分中提高折射率来减小沿关注区域之外的视线的密度不均匀性的影响。

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