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Temperature measurement using ultraviolet laser absorption of carbon dioxide behind shock waves

机译:使用紫外线激光吸收冲击波后的二氧化碳进行温度测量

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摘要

A diagnostic for microsecond time-resolved temperature measurements behind shock waves, using ultraviolet laser absorption of vibrationally hot carbon dioxide, is demonstrated. Continuous-wave laser radiation at 244 and 266 nm was employed to probe the spectrally smooth CO_(2) ultraviolet absorption, and an absorbance ratio technique was used to determine temperature. Measurements behind shock waves in both nonreacting and reacting (ignition) systems were made, and comparisons with isentropic and constant-volume calculations are reported.
机译:演示了使用紫外激光吸收振动的热二氧化碳对冲击波后的微秒时间分辨温度测量进行诊断的方法。使用244和266 nm处的连续波激光辐射探测光谱平滑的CO_(2)紫外线吸收,并使用吸光度比技术确定温度。在非反应性和反应性(点火)系统中都进行了冲击波背后的测量,并报告了与等熵和恒定体积计算的比较。

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