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Development of a sensor to measure gas temperature and carbon monoxide and water concentrations using a 1.58 micron tunable diode laser.

机译:使用1.58微米可调二极管激光器开发了一种用于测量气体温度以及一氧化碳和水浓度的传感器。

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摘要

A near-infrared laser operating in the wavelength region between 1577 and 1582 nm was developed to perform in-situ measurements of gas temperature and carbon monoxide and water concentration in the exhaust gas region of an electric arc furnace.{09}In order to further the development of the calibration relations necessary to relate spectroscopic data to gas temperature and concentration data, laboratory tests were completed. It was found that the gas temperature relationship was improved and can be used to predict the gas temperature within ±30 K. It was found that the carbon monoxide concentration relationship was improved by eliminating any water dependence from the relation and the equation can be used to predict carbon monoxide mole fraction within ±0.40 cm mol/tot mol. It was also found that the water concentration relationship was improved by reducing the equation to a linear relationship and the equation can be used to predict water mole fraction within ±0.88 cm mol/tot mol. Calibration issues were considered in order to define if differences in hardware between individual units may be a concern with the wide-scale use of the sensor. The sensor was tested at full-scale and it was determined that the two most important obstacles to the viability of the sensor are background infrared emissions and laser light attenuation due to dust particles in the measurement region.
机译:已开发出一种工作在1577至1582 nm之间的波长范围内的近红外激光器,以便对电弧炉的废气区域内的气体温度,一氧化碳和水浓度进行现场测量。{09}开发了将光谱数据与气体温度和浓度数据相关所需的校准关系,完成了实验室测试。发现气体温度关系得到改善,并且可用于预测±30 K以内的气体温度。发现通过消除该关系中的任何水依赖关系,一氧化碳浓度关系得到改善,该方程式可用于预测一氧化碳的摩尔分数在±0.40 cm mol / tot mol之内。还发现通过将方程式简化为线性关系而改善了水浓度关系,并且该方程式可用于预测在±0.88cm mol / tot mol之内的水摩尔分数。考虑校准问题是为了确定单个单元之间的硬件差异是否可能与传感器的广泛使用有关。对该传感器进行了全面测试,确定该传感器的生存能力的两个最重要的障碍是背景红外辐射和由于测量区域中的灰尘颗粒导致的激光衰减。

著录项

  • 作者

    Di Iorio, Joanna Maria.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Mechanical.; Engineering Industrial.
  • 学位 M.A.Sc.
  • 年度 2002
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;一般工业技术;
  • 关键词

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