Chen Jiu-ying, Liu Jian-guo, He Jun-feng, He Ya-bai, Zhang Guang-le, Xu Zhen-yu, Gang Qiang, Wang Liao, Yao Lu, Yuan Song, Ruan Jun, Dai Yun-hai, Kan Rui-feng
Guang Pu Xue Yu Guang Pu Fen Xi. 2014 Dec;34(12):3174-7.
Tunable diode laser absorption spectroscopy (TDLAS) has been developed to realize the real-time and dynamic measurement of the combustion temperature, gas component concentration, velocity and other flow parameters, owing to its high sensitivity, fast time response, non-invasive character and robust nature. In order to obtain accurate water vapor concentration at high temperature, several absorption spectra of water vapor near 1.39 μm from 773 to 1273 K under ordinary pressure were recorded in a high temperature experiment setup using a narrow band diode laser. The absorbance of high temperature absorption spectra was calculated by combined multi-line nonlinear least squares fitting method. Two water vapor absorption lines near 7154.35 and 7157.73 cm(-1) were selected for measurement of water vapor at high temperature. A model method for high temperature water vapor concentration was first proposed. Water vapor concentration from the model method at high temperature is in accordance with theoretical reasoning, concentration measurement standard error is less than 0.2%, and the relative error is less than 6%. The feasibility of this measuring method is verified by experiment.
可调谐二极管激光吸收光谱技术(TDLAS)因其高灵敏度、快速的时间响应、非侵入性以及稳定性强等特点,已被用于实现燃烧温度、气体成分浓度、速度及其他流动参数的实时动态测量。为了在高温下获得准确的水蒸气浓度,在高温实验装置中使用窄带二极管激光器记录了常压下773至1273 K范围内1.39μm附近的几条水蒸气吸收光谱。采用组合多线非线性最小二乘法拟合计算了高温吸收光谱的吸光度。选择了7154.35和7157.73 cm(-1)附近的两条水蒸气吸收线用于高温下水蒸气的测量。首次提出了一种高温水蒸气浓度的模型方法。该模型方法得到的高温下水蒸气浓度符合理论推导,浓度测量标准误差小于0.2%,相对误差小于6%。实验验证了该测量方法的可行性。