Tancin Ryan J, Goldenstein Christopher S
Opt Express. 2021 Sep 13;29(19):30140-30154. doi: 10.1364/OE.435506.
This manuscript presents an ultrafast-laser-absorption-spectroscopy (ULAS) diagnostic capable of providing calibration-free, single-shot measurements of temperature and CO at 5 kHz in combustion gases at low and high pressures. Additionally, this diagnostic was extended to provide 1D, single-shot measurements of temperature and CO in a propellant flame. A detailed description of the spectral-fitting routine, data-processing procedures, and determination of the instrument response function are also presented. The accuracy of the diagnostic was validated at 1000 K and pressures up to 40 bar in a heated-gas cell before being applied to characterize the spatiotemporal evolution of temperature and CO in AP-HTPB and AP-HTPB-aluminum propellant flames at pressures between 1 and 40 bar. The results presented here demonstrate that ULAS in the mid-IR can provide high-fidelity, calibration-free measurements of gas properties with sub-nanosecond time resolution in harsh, high-pressure combustion environments representative of rocket motors.
本手稿介绍了一种超快激光吸收光谱(ULAS)诊断技术,该技术能够在低、高压燃烧气体中以5 kHz的频率提供无校准的单次温度和一氧化碳测量。此外,该诊断技术还扩展到可在推进剂火焰中进行温度和一氧化碳的一维单次测量。文中还详细描述了光谱拟合程序、数据处理过程以及仪器响应函数的确定。在将该诊断技术应用于表征压力在1至40 bar之间的AP-HTPB和AP-HTPB-铝推进剂火焰中温度和一氧化碳的时空演化之前,先在加热气体池中于1000 K和高达40 bar的压力下验证了其诊断准确性。此处给出的结果表明,中红外波段的ULAS能够在代表火箭发动机的恶劣高压燃烧环境中,以亚纳秒级的时间分辨率提供气体特性的高保真、无校准测量。