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Thermographic laser Doppler velocimetry using the phase-shifted luminescence of BAM:Eu2+ phosphor particles for thermometry

机译:使用BAM:Eu2 +荧光粉颗粒的相移发光进行热成像激光多普勒测速的测温法

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摘要

Simultaneous point measurements of gas velocity and temperature were recently demonstrated using thermographic phosphors as tracer particles. There, continuous wave (CW) excitation was used and the spectral shift of the luminescence was detected with a two-colour intensity ratio method to determine the gas temperature. The conventional laser Doppler velocimetry (LDV) technique was employed for velocimetry. In this paper, an alternative approach to the gas temperature measurements is presented, which is instead based on the temperature-dependence of the luminescence lifetime. The phase-shift between the luminescence signal and time-modulated excitation light is evaluated for single BaMgAl10O17:Eu2+ phosphor particles as they cross the probe volume. Luminescence lifetimes evaluated in the time domain and frequency domain indicate that in these experiments, interferences from in-phase signals such as stray excitation laser light are negligible. The dependence of the phase-shift on flow temperature is characterised. In the temperature sensitive range above 700 K, precise gas temperature measurements can be obtained (8.6 K at 840 K) with this approach.
机译:最近,使用热成像荧光粉作为示踪剂颗粒,可以同时测量气体速度和温度。在那里,使用了连续波(CW)激发,并通过一种双色强度比方法检测了发光的光谱偏移,以确定气体温度。测速采用传统的激光多普勒测速(LDV)技术。在本文中,提出了一种替代的气体温度测量方法,该方法基于发光寿命的温度依赖性。当单个BaMgAl10O17:Eu2 +荧光粉颗粒穿过探针体积时,将评估发光信号和时间调制激发光之间的相移。在时域和频域中评估的发光寿命表明,在这些实验中,来自同相信号(例如杂散激发激光)的干扰可以忽略不计。表征了相移对流动温度的依赖性。在700 K以上的温度敏感范围内,采用这种方法可以获得精确的气体温度测量值(840 K下为8.6 K)。

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