Experimental Verification of a Modified Cylindrical Focused Laser Differential Interferometer

K. Hopkins, Ramprakash Ananthapadmanaban, Timothy J. McIntyre, David J. Mee, Vincent Wheatley, A. Veeraragavan
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Abstract

A modification to cylindrical focused laser differential interferometry (CFLDI) that, without beam intersection, can achieve smaller stand-off distances from flat geometries than conventional FLDI is presented. The modified system uses a cylindrical lens pair to expand and collimate the beam in a single direction, parallel to the model surface, forming a long, flat, elliptical profile. Subsequently, a spherical lens focuses the beam. Mach 7.3 hypersonic flow, produced by the T4 Stalker Reflected Shock Tunnel, was used for an experimental comparison between the responses of the modified CFLDI and a similar FLDI system in the freestream and just above the boundary-layer edge. Good agreement between the modified CFLDI and FLDI among all measured frequencies was observed when probing near the boundary-layer edge. The comparison in the freestream had good agreement up to 1500 kHz, and higher frequencies saw the modified CFLDI response attenuated at a shallower angle than the FLDI. A combination of different system parameters and base noise levels between the experiments is believed to account for this difference. The modified CFLDI system was used to probe inside the boundary layer, achieving a [Formula: see text] of approximately 0.4, where broadband turbulence is detected.
改进型圆柱聚焦激光差分干涉仪的实验验证
本文介绍了圆柱聚焦激光差分干涉仪(CFLDI)的一种改良方法,与传统的 FLDI 相比,该方法无需光束交叉,就能实现更小的平面几何距离。改进后的系统使用一对圆柱透镜将光束向平行于模型表面的单一方向扩展和准直,形成一个长而平的椭圆轮廓。随后,球面透镜将光束聚焦。利用 T4 Stalker 反射冲击隧道产生的 7.3 马赫高超音速流,对改进型 CFLDI 和类似的 FLDI 系统在自由流和边界层边缘上方的响应进行了实验比较。当探测边界层边缘附近时,改良 CFLDI 和 FLDI 在所有测量频率上都表现出良好的一致性。自由流中的对比结果在 1500 kHz 以下的频率具有良好的一致性,而在更高的频率上,改良 CFLDI 的响应衰减角度比 FLDI 更浅。实验中不同的系统参数和基本噪声水平被认为是造成这种差异的原因。改进型 CFLDI 系统用于探测边界层内部,达到了约 0.4 的[公式:见正文],在此可探测到宽带湍流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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