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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Time-resolved gas thermometry by laser-induced grating spectroscopy with a high-repetition rate laser system
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Time-resolved gas thermometry by laser-induced grating spectroscopy with a high-repetition rate laser system

机译:通过激光诱导的光栅光谱与高重复速率激光系统的时间分辨气体温度

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摘要

Thermometry using laser-induced grating spectroscopy (LIGS) is reported using a high-repetition rate laser system, extending the technique to allow time-resolved measurements of gas dynamics. LIGS signals were generated using the second harmonic output at 532 nm of a commercially available high-repetition rate Nd:YAG laser with nitrogen dioxide as molecular seed. Measurements at rates up to 10 kHz were demonstrated under static cell conditions. Transient temperature changes of the same gas contained in a cell subjected to rapid compression by injection of gas were recorded at 1 kHz to derive the temperature evolution of the compressed gas showing temperature changes of 50 K on a time-scale of 0.1 s with a measurement precision of 1.4%. The data showed good agreement with an analytical thermodynamic model of the compression process.
机译:使用高重复速率激光系统报告使用激光诱导光栅光谱(Lig)的温度测量,延长该技术以允许燃气动力学的时间分辨测量。 使用在市售的高重复率Nd的532nm处的第二谐波输出产生Ligs信号,其中YAG激光用二氧化氮作为分子种子。 在静态细胞条件下对高达10kHz的速率进行测量。 在通过注射气体进行快速压缩的细胞中包含的相同气体的瞬态温度变化被记录为1kHz,以导出压缩气体的温度演变,所述压缩气体显示在0.1秒的时间尺度的温度变化为0.1秒,测量 精度为1.4%。 数据显示了与压缩过程的分析热力学模型吻合良好。

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