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A diode laser-based velocimeter providing point measurements in unseeded flows using modulated filtered Rayleigh scattering (MFRS).

机译:基于二极管激光器的测速仪,使用调制滤波瑞利散射(MFRS)在非种子流中提供点测量。

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摘要

The development to date of a diode-laser based velocimeter providing point-velocity-measurements in unseeded flows using molecular Rayleigh scattering is discussed. The velocimeter is based on modulated filtered Rayleigh scattering (MFRS), a novel variation of filtered Rayleigh scattering (FRS), utilizing modulated absorption spectroscopy techniques to detect a strong absorption of a relatively weak Rayleigh scattered signal. A rubidium (Rb) vapor filter is used to provide the relatively strong absorption; alkali metal vapors have a high optical depth at modest vapor pressures, and their narrow linewidth is ideally suited for high-resolution velocimetry. Semiconductor diode lasers are used to generate the relatively weak Rayleigh scattered signal; due to their compact, rugged construction diode lasers are ideally suited for the environmental extremes encountered in many experiments.;The MFRS technique utilizes the frequency-tuning capability of diode lasers to implement a homodyne detection scheme using lock-in amplifiers. The optical frequency of the diode-based laser system used to interrogate the flow is rapidly modulated about a reference frequency in the D2-line of Rb. The frequency modulation is imposed on the Rayleigh scattered light that is collected from the probe volume in the flow under investigation. The collected frequency modulating Rayleigh scattered light is transmitted through a Rb vapor filter before being detected. The detected modulated absorption signal is fed to two lock-in amplifers synchronized with the modulation frequency of the source laser. High levels of background rejection are attained since the lock-ins are both frequency and phase selective. The two lock-in amplifiers extract different Fourier components of the detected modulated absorption signal, which are ratioed to provide an intensity normalized frequency dependent signal from a single detector.;A Doppler frequency shift in the collected Rayleigh scattered light due to a change in the velocity of the flow under investigation results in a change in the detected modulated absorption signal. This change in the detected signal provides a quantifiable measure of the Doppler frequency shift, and hence the velocity in the probe volume, provided that the laser source exhibits acceptable levels of frequency stability (determined by the magnitude of the velocities being measured). An extended cavity diode laser (ECDL) in the Littrow configuration provides frequency tunable, relatively narrow-linewidth lasing for the MFRS velocimeter. Frequency stabilization of the ECDL is provided by a proportional-integral-differential (PID) controller based on an error signal in the reference arm of the experiment. The optical power of the Littrow laser source is amplified by an antireflection coated (AR coated) broad stripe diode laser. The single-mode, frequency-modulatable, frequency-stable O(50 mW) of optical power provided by this extended cavity diode laser master oscillator power amplifier (ECDL-MOPA) system provided sufficient scattering signal from a condensing jet of CO2 to implement the MFRS technique in the frequency-locked mode of operation.
机译:迄今为止,已经讨论了基于二极管激光的测速仪的发展,该测速仪使用分子瑞利散射在无种子的流中提供点速度测量。测速仪基于调制滤波瑞利散射(MFRS),这是滤波瑞利散射(FRS)的一种新颖变体,它利用调制吸收光谱技术检测相对较弱的瑞利散射信号的强吸收。 vapor(Rb)蒸气过滤器用于提供相对较强的吸收;碱金属蒸气在适度的蒸气压下具有较高的光学深度,它们的窄线宽非常适合高分辨率测速。半导体二极管激光器用于产生相对较弱的瑞利散射信号。由于其紧凑,坚固的构造二极管激光器非常适合许多实验中遇到的极端环境。MFRS技术利用二极管激光器的频率调谐功能,使用锁定放大器来实现零差检测方案。用于询问流的基于二极管的激光系统的光频率在Rb的D2线中围绕参考频率快速调制。频率调制被施加到瑞利散射光上,该光是从研究流中的探针体积中收集的。所收集的调制频率的瑞利散射光在被检测到之前先通过Rb蒸气过滤器传输。检测到的已调制吸收信号被馈送到与源激光器的调制频率同步的两个锁定放大器。由于锁定具有频率和相位选择性,因此可以实现高水平的背景抑制。两个锁相放大器提取检测到的已调制吸收信号的不同傅立叶分量,并对其比例进行调整以从单个检测器提供强度归一化的频率相关信号。所研究流体的流速导致检测到的调制吸收信号发生变化。如果激光源显示出可接受的频率稳定性水平(由被测速度的大小确定),则检测到的信号的这种变化可提供多普勒频移的量化度量,从而可量化探针体积的速度。 Littrow配置中的扩展腔二极管激光器(ECDL)为MFRS测速仪提供了频率可调的,相对窄的线宽激光。 ECDL的频率稳定度由比例积分微分(PID)控制器根据实验参考臂中的误差信号提供。 Littrow激光源的光功率通过防反射涂层(AR涂层)宽条纹二极管激光器放大。此扩展腔二极管激光主振荡器功率放大器(ECDL-MOPA)系统提供的单模,频率可调制,频率稳定O(50 mW)的光功率提供了来自CO2冷凝喷嘴的足够散射信号以实现MFRS技术处于锁频操作模式。

著录项

  • 作者

    Jagodzinski, Jeremy James.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 317 p.
  • 总页数 317
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:16

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