宇航计测技术 ›› 2025, Vol. 45 ›› Issue (1): 95-102.doi: 10.12060/j.issn.1000-7202.2025.01.16

• 精密测试技术 • 上一篇    下一篇

基于超连续激光吸收光谱的温度测量技术研究

钱宝健1,张浩2,杨鑫宇1,常海涛1,蔡静1,*   

  1. 1.中国航空工业集团公司北京长城计量测试技术研究所,北京 100095;

    2.豫西工业集团有限公司郑州计量站,郑州 451450

  • 出版日期:2025-03-15 发布日期:2025-03-27
  • 作者简介:钱宝健(1999-),男,助理工程师,硕士,主要研究方向:吸收光谱测温技术。

Research on Temperature Measurement Technology Based on Supercontinuum Laser Absorption Spectroscopy#br#

QIAN Baojian1,ZHANG Hao2,YANG Xinyu1,CHANG Haitao1,CAI Jing1,*   

  1. 1.AVIC Changcheng Institute of Metrology & Measurement,Beijing 100095,China;
    2.Yu Xi Industrial Group Co.,Ltd.Zhengzhou Metrology Station,Zhengzhou 451450,China
  • Online:2025-03-15 Published:2025-03-27

摘要: 随着激光吸收光谱技术在复杂工况应用和高精度测量需求方面的发展,超连续激光吸收光谱测量技术开始得到广泛关注。基于超连续激光吸收光谱的温度测量技术研究,发展了一种用于同步解算温度和浓度等参数的超连续光谱特征匹配法,并进行了仿真计算分析和试验验证。通过仿真计算得到的吸光度数据进行了300~2 600 K范围的温度解算,验证了该方法在温度准确测量方面的可行性。同时搭建测量系统,利用水分子在7 433~7 446 cm-1范围内的光谱吸收进行了473~1 173 K共8个温度点的试验验证。通过基线修正参数、时频转换参数与待测参数的同步拟合,实现了基于超连续光谱特征匹配法的试验温度测量,温度测量的最大相对误差为-1.98%。试验结果证明了超连续光谱特征匹配法在温度测量方面的准确性。

关键词: 光谱法温度测量, 吸收光谱, 光谱特征

Abstract: With the advancement of laser absorption spectroscopy technology in applications under complex conditions and the demand for high-precision measurements,supercontinuum laser absorption spectroscopy measurement technology has begun to receive widespread attention.This study conducts research on temperature measurement technology based on supercontinuum laser absorption spectroscopy,developing a supercontinuum spectral feature matching method for simultaneously resolving parameters such as temperature and concentration.Simulation calculations and experimental validations were carried out.Through simulation calculations,absorbance data were obtained for temperature resolution in the range of 300 K to 2 600 K,verifying the feasibility of this method for accurate temperature measurement.A measurement system was also built,and experimental validation was conducted at eight temperature points from 473 K to 1 173 K using the spectral absorption of water molecules in the range of 7 433 cm-1 to 7 446 cm-1.By synchronously fitting the baseline correction parameters,time-frequency conversion parameters,and the parameters to be measured,experimental temperature measurements based on the supercontinuum spectral feature matching method were achieved,with a maximum relative error of -1.98% in temperature measurement.The experimental results demonstrate the accuracy of the supercontinuum spectral feature matching method in temperature measurement.

Key words: Spectroscopic temperature measurement, Absorption spectrum, Spectral feature

中图分类号: