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Focusing-schlieren visualization in a dual-mode scramjet

机译:双模超燃冲压发动机中的聚焦刻痕可视化

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摘要

Schlieren imaging is particularly suited to measuring density gradients in compressible flowfields and can be used to capture shock waves and expansion fans, as well as the turbulent structures of mixing and wake flows. Conventional schlieren imaging, however, has difficulty clearly capturing such structures in long-duration supersonic combustion test facilities. This is because the severe flow temperatures locally change the refractive index of the window glass that is being used to provide optical access. On the other hand, focusing-schlieren imaging presents the potential of reduced sensitivity to thermal distortion of the windows and to clearly capture the flow structures even during a combustion test. This reduced sensitivity is due the technique's ability to achieve a narrow depth of focus. As part of this study, a focusing-schlieren system was developed with a depth of focus near +/- 5 mm and was applied to a direct-connect, continuous-flow type, supersonic combustion test facility with a stagnation temperature near 1200 K. The present system was used to successfully visualize the flowfield inside a dual-mode scramjet. The imaging system captured combustion-induced volumetric expansion of the fuel jet and an anchored bifurcated shock wave at the trailing edge of the ramp fuel injector. This is the first time successful focusing-schlieren measurements have been reported for a dual-mode scramjet.
机译:Schlieren成像特别适合于测量可压缩流场中的密度梯度,并可用于捕获冲击波和膨胀风扇以及混合流和尾流的湍流结构。然而,常规的Schlieren成像在长时间的超音速燃烧测试设备中难以清晰地捕获此类结构。这是因为剧烈的流动温度会局部改变用于提供光学通道的窗户玻璃的折射率。另一方面,聚焦纹影成像具有降低窗户热变形敏感性的潜力,即使在燃烧测试期间也能清晰地捕获流动结构。这种降低的灵敏度是由于该技术能够实现较窄的聚焦深度。作为这项研究的一部分,开发了一种聚焦颤抖系统,其聚焦深度接近+/- 5 mm,并应用于停滞温度接近1200 K的直接连接,连续流型,超音速燃烧测试设备。本系统用于成功可视化双模式超燃冲压发动机内部的流场。该成像系统捕获了由燃烧引起的喷油嘴的体积膨胀以及在斜坡喷油嘴的后缘锚定的分叉冲击波。这是首次成功报道了双模超燃冲压发动机的聚焦颤抖测量。

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