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Time-resolved gas thermometry by laser-induced grating spectroscopy with a high-repetition rate laser system

机译:高重复频率激光系统通过激光诱导光栅光谱法对时间分辨气体进行测温

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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 532nm of a commercially available high-repetition rate Nd:YAG laser with nitrogen dioxide as molecular seed. Measurements at rates up to 10kHz 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 1kHz to derive the temperature evolution of the compressed gas showing temperature changes of 50K on a time-scale of 0.1s with a measurement precision of 1.4%. The data showed good agreement with an analytical thermodynamic model of the compression process.
机译:据报道,使用高重复频率激光系统使用激光诱导光栅光谱法(LIGS)进行测温,扩展了该技术以允许时间分辨的气体动力学测量。 LIGS信号是使用以二氧化氮为分子种子的市售高重复频率Nd:YAG激光器在532nm处的二次谐波输出生成的。静态单元格条件下的测量速率高达10kHz。以1kHz记录通过注入气体进行快速压缩的电池中包含的相同气体的瞬态温度变化,以推导压缩气体的温度变化,在0.1s的时间尺度上显示50K的温度变化,测量精度为1.4%。数据显示与压缩过程的解析热力学模型吻合良好。

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