Field tests of the Raman gas composition sensor

M. Buric, B. Chorpening, J. Mullen, S. Woodruff, J. Ranalli
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引用次数: 7

Abstract

A gas composition sensor based on Raman spectroscopy using reflective metal lined capillary waveguides is tested under field conditions for feedforward applications in combustion control. The capillary waveguide enables effective use of low powered lasers and rapid composition determination, for computation of required parameters to pre-adjust burner control based on incoming fuel. Tests on high pressure fuel streams show sub-second time response and better than one percent accuracy on natural gas fuel mixtures. Fuel composition and Wobbe constant values are provided at one second intervals or faster. The sensor, designed and constructed at NETL, is packaged for Class I Division 2 operations typical of gas turbine and boiler environments, and samples gas at up to 800 psig. Simultaneous determination of the hydrocarbons methane, ethane, and propane plus CO, CO2, H2O, H2, N2, and O2 are realized. The capillary waveguide permits use of miniature spectrometers and laser power of less than 100 mW. The capillary dimensions of 1 m length and 300 μm ID also enable a full sample exchange in 0.4 s or less at 5 psig pressure differential, which allows a fast response to changes in sample composition. Sensor operation under field operation conditions will be reported.
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拉曼气体成分传感器的现场测试
利用反射金属衬里毛细管波导,对一种基于拉曼光谱的气体成分传感器在燃烧控制中的前馈应用进行了现场测试。毛细管波导能够有效地利用低功率激光器和快速成分测定,用于计算所需参数,以根据输入燃料预调整燃烧器控制。对高压燃料流的测试表明,对天然气燃料混合物的时间响应低于秒,精度优于1%。每隔一秒或更快的时间提供燃料成分和Wobbe常数值。该传感器由NETL公司设计和制造,用于典型的燃气轮机和锅炉环境的I类2级操作,并可在高达800 psig的压力下采样气体。实现了烃类(甲烷、乙烷、丙烷)和CO、CO2、H2O、H2、N2、O2的同时测定。毛细管波导允许使用微型光谱仪和激光功率小于100毫瓦。1 m长度和300 μm ID的毛细管尺寸也可以在5 psig压差下在0.4 s或更短的时间内完成完整的样品交换,从而可以快速响应样品成分的变化。将报告传感器在现场操作条件下的运行情况。
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