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A method for measuring temperature, molecular composition or molecular densities in gases

机译:一种测量气体中温度,分子组成或分子密度的方法

摘要

A measuring technique and method are provided to simultaneously determine the molecular density of several molecular species and the temperature within a closed process room in a melting or combustion process. In such processes in the industry, e.g. in metallurgic process industry, it is important to determine the temperature and the contents within the gas or flame without physically connect to or disturb the process. This has shown to raise large problems especially at high temperatures. The radio signal over a frequency band is measured on the outside of the process room through a window in the mantel covering as a function of frequency and registered on a computer as a radio spectrum. The system is calibrated by using a known signal transmitted through the process room. The spectral lines are identified by their frequency from a database. The temperature is determined from several lines of the same molecular specie and the molecular densities are determined from the intensities of the lines. The method is suitable to determine vibrational and rotational excitation of molecular species in the radio wavelength range of 30 mu m to 500 m. The densities of molecular species and the temperature can be imaged in three dimensions inside the process room or exhaust channel if interferometers are used for simultaneous two dimensional imaging from several azimuth directions.
机译:提供一种测量技术和方法,以同时确定几种分子种类的分子密度和熔融或燃烧过程中密闭过程室内的温度。在工业中的此类过程中,例如在冶金过程工业中,重要的是确定气体或火焰中的温度和含量,而无须物理连接或干扰过程。已经显示出引起了很大的问题,特别是在高温下。频带上的无线电信号是通过壁炉罩中的窗户在处理室的外部进行测量的,该窗户是频率的函数,并在计算机上注册为无线电频谱。通过使用通过处理室传输的已知信号对系统进行校准。频谱线通过它们的频率从数据库中识别。由相同分子种类的多条线确定温度,并且由线的强度确定分子密度。该方法适合于确定在30μm至500 m的无线电波长范围内的分子种类的振动和旋转激发。如果将干涉仪用于从多个方位角方向同时进行二维成像,则可以在处理室或排气通道内的三维空间内对分子种类和温度的密度进行成像。

著录项

  • 公开/公告号AU688302B2

    专利类型

  • 公开/公告日1998-03-12

    原文格式PDF

  • 申请/专利权人 MEFOS STIFTELSEN FOR METALLURGISK FORSKNING;

    申请/专利号AU19940060130

  • 发明设计人 LARS B BAATH;

    申请日1994-02-03

  • 分类号G01N22/00;

  • 国家 AU

  • 入库时间 2022-08-22 02:52:49

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