首页 | 本学科首页   官方微博 | 高级检索  
     

基于时分复用技术的吸收光谱气体温度在线测量研究
引用本文:Lou NZ,Li N,Weng CS. 基于时分复用技术的吸收光谱气体温度在线测量研究[J]. 光谱学与光谱分析, 2012, 32(5): 1329-1333
作者姓名:Lou NZ  Li N  Weng CS
作者单位:南京理工大学瞬态物理国家重点实验室
基金项目:国家自然科学青年科学基金项目(11002074);高等学校博士学科点专项科研基金项目(20093219110037);中国博士后科学基金项目(20100481147);江苏省博士后科研计划项目(0902094C);南京理工大学自主科研专项计划项目(2010ZYTS092)资助
摘    要:可调谐半导体激光吸收光谱技术是一种具有高灵敏度、高选择性的非接触式气体在线测量技术。通过直接扫描多条H2O特征谱线并结合最小二乘算法实现对开放环境气体温度的在线测量。利用HITRAN光谱数据库详细讨论了边界效应对气体温度浓度测量的影响,计算结果表明,扫描多特征谱线并结合最小二乘算法可有效减小边界效应对开放环境气体温度测量的影响。实验中采用时分复用技术同时扫描了7 444.36,7 185.60,7 182.95和7 447.48cm-1四条H2O特征谱线,对管式炉573~973K范围内不同工况下的气体温度进行了测量。吸收光谱测量结果与热电偶信号的最大温差小于52.4K,温度测量最大相对误差为6.8%。

关 键 词:可调谐半导体激光吸收光谱  温度灵敏度  温度分布测量  最小二乘法  时分复用技术

In situ temperature measurement by absorption spectroscopy based on time division multiplexing technology
Lou Nan-zheng,Li Ning,Weng Chun-sheng. In situ temperature measurement by absorption spectroscopy based on time division multiplexing technology[J]. Spectroscopy and Spectral Analysis, 2012, 32(5): 1329-1333
Authors:Lou Nan-zheng  Li Ning  Weng Chun-sheng
Affiliation:National Key Laboratory of Transient Physics, Nanjing University of Science and Technology, Nanjing 210094, China. lounanzheng@163.com
Abstract:Tunable diode laser absorption spectroscopy (TDLAS) technology is a kind of high sensitivity, high selectivity of non contacting gas in situ measurement technique. In the present paper, in situ gas temperature measurement of an open environment was achieved by means of direct scanning multiple characteristic lines of H2O and combined with least-squares algorithm. Through the use of HITRAN spectral database, the boundary effect on the gas temperature and concentration measurements was discussed in detail, and results showed that the combination of scanning multiple characteristic lines and least-squares algorithm can effectively reduce the boundary effect on the gas temperature measurements under the open environment. Experiments using time division multiplexing technology to simultaneously scan 7444.36, 7185.60, 7182.95 and 7447.48 cm(-1), the four characteristic H2O lines, the gas temperature of tubular furnace in the range of 573-973 K was measured under different conditions. The maximum temperature difference between absorption spectrum measurement and thermocouple signal was less than 52.4 K, and the maximum relative error of temperature measurement was 6.8%.
Keywords:TDLAS  Temperature sensitivity  Temperature distribution measurement  Least-squares algorithm  Time-division multiplexing
本文献已被 CNKI PubMed 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号