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Dual-Laser-Induced Breakdown Thermometry via Sound Speed Measurement: A New Procedure for Improved Spatiotemporal Resolution

机译:双激光诱导的击穿温度通过声速测量:提高时空分辨率的新方法

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摘要

Measurement of acoustic waves from laser-induced breakdown has been developed as gas thermometry in combustion atmospheres. In the measurement, two laser-induced breakdown spots are generated and the local gas temperature between these two spots is determined through the measurement of the sound speed between them. In the previous study, it was found that the local gas breakdown can introduce notable system uncertainty, about 5% to the measured temperature. To eliminate the interference, in present work, a new measurement procedure was proposed, where two individual laser pulses with optimized firing order and delay time were employed. With the new measurement procedure, the system uncertainty caused by local gas breakdown can be largely avoided and the temporal and spatial resolutions can reach up to 0.5 ms and 10 mm, respectively. The improved thermometry, dual-laser-induced breakdown thermometry (DLIBT), was applied to measure temperatures of hot flue gases provided by a multijet burner. The measured temperatures covering the range between 1000 K and 2000 K were compared with the ones accurately obtained through the two-line atomic fluorescence (TLAF) thermometry with a measurement uncertainty of ~3%, and a very good agreement was obtained.
机译:从激光诱导的击穿中的声波的测量已被开发为燃烧环境中的气体温度。在测量中,产生两个激光诱导的击穿点,并且通过测量它们之间的声速来确定这两个斑点之间的局部气体温度。在以前的研究中,发现局部气体击穿可以引入显着的系统不确定性,约5%至测量温度。为了消除干扰,在现有工作中,提出了一种新的测量过程,其中采用了具有优化烧制顺序和延迟时间的两个单独的激光脉冲。利用新的测量程序,可以很大程度上避免了由局部气体击穿引起的系统不确定性,并且时间和空间分辨率分别可以达到0.5毫秒和10毫米。应用改进的温度,双激光诱导的击穿温度(DLIBT),用于测量由多jet燃烧器提供的热烟道气的温度。将覆盖1000k和2000k的范围的测量温度与通过双线原子荧光(TLAF)温度的精确获得的温度与测量不确定度约为3%,获得非常好的协议。

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