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Two-color pyrometry system to eliminate optical errors for spatially resolved measurements in flames

机译:双色光学系统,消除火焰中空间分辨测量的光学误差

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摘要

Two-color (2C) pyrometry has long been used to measure flame temperature and soot concentration from radiative emission in flames. While 2C pyrometry is not an absolute measurement in non-axisymmetric flames (such as diesel spray combustion), it is a desirable diagnostic for semi-quantitative or qualitative measurements since it requires minimal optical access and can utilize high-speed imaging to attain exceptional temporal and spatial resolutions. In this work, an improved optical configuration of 2C pyrometry is presented that (1) eliminates optical errors inherent in other designs and (2) uses off-the-shelf optics and a single camera. In particular, this work analyzes the impact of parallax and path length differences on the 2C pyrometry measurement and exemplifies how the present design eliminates associated errors by design rather than in post-processing. The theoretical range of measurements were generated a priori and overlaid with experimental data to illustrate the dynamic range over which 2C pyrometry can determine the soot concentration and temperature in theory and in practice. (C) 2019 Optical Society of America
机译:两种颜色(2C)热测定长期以来用于测量火焰温度和火焰中的辐射发射的火焰温度和烟灰浓度。虽然2C热测定不是非轴对称火焰中的绝对测量(例如柴油喷雾燃烧),但是对于半定量或定性测量是期望的诊断,因为它需要最小的光学访问,并且可以利用高速成像来获得卓越的时间和空间决议。在这项工作中,提出了2C热测定的改进的光学结构,(1)消除了其他设计中固有的光学误差,并且(2)使用搁板的光学器件和单个相机。特别地,该工作分析了视差和路径长度差异对2C热测定测量的影响,并举例说明本设计如何通过设计而不是在后处理中消除相关的错误。产生理论的测量范围并覆盖实验数据,以说明2C热测定可以在理论和实践中确定烟灰浓度和温度的动态范围。 (c)2019年光学学会

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