首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >The Focusing Laser Differential Interferometer, an Instrument for Localized Turbulence Measurements in Refractive Flows
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The Focusing Laser Differential Interferometer, an Instrument for Localized Turbulence Measurements in Refractive Flows

机译:聚焦激光微分干涉仪,一种用于折射流中局部湍流测量的仪器

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摘要

The theory, design, and use of a focusing laser differential interferometer (FLDI) instrument are described. The FLDI is a relatively simple, nonimaging, common-path polarization interferometer for measuring refractive signals generated by turbulence, as well as small-amplitude acoustics and boundary-layer instabilities. It has in principle a unique ability to look through wind-tunnel windows, ignore sidewall boundary-layers and vibration, and concentrate only on the refractive signal near a pair of sharp beam foci in the core flow. The instrument's low cost and ease of implementation make it a promising alternative to traditional hot-wire anemometry (HWA) and particle-based methods for turbulence characterization. A matrix equation is written for the overall optical behavior of the FLDI, and transfer functions are developed to account for spatial filtering, fumber of the field lenses, various turbulence profiles, etc. Benchtop experiments using a turbulent sonic airjet demonstrate the focusing ability of the FLDI, its frequency response, and unwanted signal rejection. The instrument is also used to optically interrogate the flow in the Penn State Supersonic Wind Tunnel and in USAF AEDC Hypervelocity Tunnel 9, where it made preliminary measurements of freestream disturbance levels and power spectra. A central feature of the FLDI used here is the replacement of traditional fixed Wollaston birefringent prisms with variable Sanderson prisms for separation and recombination of the helium-neon laser beams, and for the accurate setting of micrometerrange beam separation distances required for successful turbulence measurements. The instrument also features phase compensation of the output, where perpendicularly polarized light signals are separately sensed by the twin photodetectors. This provides a unique ability to measure the coherence of turbulent spectra and thus to reject low-coherence noise.
机译:描述了聚焦激光差分干涉仪(FLDI)仪器的理论,设计和使用。 FLDI是一种相对简单的非成像共路径偏振干涉仪,用于测量由湍流以及小幅度声学和边界层不稳定性产生的折射信号。原则上,它具有独特的能力,可以透过风洞窗浏览,忽略侧壁边界层和振动,并且仅集中于岩心流中一对尖锐光束焦点附近的折射信号。该仪器的低成本和易用性使其成为传统热线风速仪(HWA)和基于粒子的湍流表征方法的有希望的替代品。为FLDI的整体光学性能编写了一个矩阵方程,并开发了传递函数以解决空间滤波,物镜的f /数量,各种湍流剖面等问题。使用湍流声波喷气机进行的台式实验证明了聚焦能力FLDI的特性,其频率响应和不想要的信号抑制。该仪器还用于对宾州超音速风洞和美国空军AEDC超高速隧道9中的气流进行光学检查,对自由流干扰水平和功率谱进行了初步测量。此处使用的FLDI的主要功能是用可变的Sanderson棱镜替代传统的固定式Wollaston双折射棱镜,以分离和重组氦氖激光束,并精确设置成功进行湍流测量所需的微米范围的光束分离距离。该仪器还具有输出相位补偿功能,其中双偏振光电探测器分别感测垂直偏振光信号。这提供了测量湍流光谱相干性并从而抑制低相干性噪声的独特能力。

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