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Optical velocimetry correction in Fabry–Perot measurements taken through cylindrically expanding shocked fluids with no dispersion

机译:法布里-珀罗测量中的光学测速校正,通过无色散的圆柱形膨胀冲击流体进行

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摘要

A correction is needed in interpreting optical velocity measurements made by reflected frequency versus time measurements through cylindrically expanding air or fluids. The reflected frequency seen by the velocimeter will be higher than it would be in a planar geometry, even if the fluid obeys the Gladstone–Dale model for the index of refraction versus compression. This has been pointed out by Wackerle, Stacy, and Dallman Proc. Int. Soc. Opt. Eng.832, 72 (1987), who develop a general Lagrangian treatment of one‐dimensional planar, cylindrical, and spherical geometries. Our work, developed independently, uses a different, very simple, and rigorous treatment for a special case of cylindrical geometry. It also provides physical insight into the processes that lead to this frequency change. The magnitude of the correction is very small for air, but for a realistic constant density versus radius model is about 5–10 for fluids such as water, for cylindrically expanding shocks with radii of curvature near 3 cm.
机译:在解释通过圆柱膨胀的空气或流体进行反射频率与时间测量的光速测量时,需要进行校正。测速仪看到的反射频率将高于平面几何形状中的反射频率,即使流体服从折射率与压缩率的 Gladstone-Dale 模型。Wackerle、Stacy 和 Dallman [Proc. Int. Soc. Opt. Eng.832, 72 (1987)] 已经指出了这一点,他们开发了对一维平面、圆柱形和球形几何形状的一般拉格朗日处理。我们的工作是独立开发的,对圆柱形几何的特殊情况使用了不同的、非常简单和严格的处理。它还提供了对导致这种频率变化的过程的物理见解。对于空气,修正的幅度非常小,但对于实际的恒定密度与半径模型,对于水等流体,对于曲率半径接近 3 cm 的圆柱形膨胀冲击,修正幅度约为 5&pnt;-10%。

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  • 来源
    《journal of applied physics》 |1989年第12期|4496-4499|共页
  • 作者

    D. R. Goosman;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
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