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Determination of Lean Burn Combustion Temperature Using Ultraviolet Emission

机译:紫外发射法测定稀薄燃烧温度

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Measurements of the ultraviolet emission spectrum emitted from a lean burn premixed natural gas flame were taken over a range of flame temperatures using a fiber-optic/CCD spectrometer. Combustion temperatures were determined by two methods: by measuring the unburned oxygen in the exhaust and by calculating the temperature using the fuel and airflows. These temperatures were correlated to ratios composed of the integrated intensity of the long wavelength region of the OH band between 310 to 340 nm (ratio''''s numerator) and that between 305 and 310 nm (ratio''''s denominator). Average local combustor flame temperatures at the end of the combustion zone may then be determined by tracking these ratios during combustor operation. The sensitivity of these ratios yields a 0.8% change in the ratios every 20$~^{circ}$ F with a precision of ${pm}30~^{circ}$ F or ${pm}1hbox{%}$ at 3000$~^{circ}$F with 95% confidence bounds demonstrating the feasibility of this technique for use as a potential control parameter for gas turbine combustors burning natural gas and air mixtures. This method is well suited for the low equivalence ratios $(≪1)$ required to reduce NOx and CO emissions. Other methods using peak ratios of different emission bands exhibit nonlinearity, lower sensitivity and greater uncertainty.
机译:使用光纤/ CCD光谱仪在一定范围的火焰温度下测量稀燃预混天然气火焰发出的紫外线发射光谱。通过两种方法确定燃烧温度:通过测量排气中未燃烧的氧气,并通过使用燃料和气流来计算温度。这些温度与由310至340nm(比率分子)和305至310nm(比率分母)之间的OH带的长波长区域的积分强度组成的比率相关。 。然后可以通过在燃烧器运行期间跟踪这些比率来确定燃烧区域末端的平均局部燃烧器火焰温度。这些比率的敏感性使比率每20 $〜^ {circ} $ F产生0.8%的变化,精度为$ {pm} 30〜^ {circ} $ F或$ {pm} 1hbox {%} $具有95%置信区间的3000 $ ^^ circF表明了该技术作为燃烧天然气和空气混合物的燃气轮机燃烧器的潜在控制参数的可行性。此方法非常适合降低NOx和CO排放所需的低当量比$(≪1)$。使用不同发射带峰比的其他方法表现出非线性,较低的灵敏度和较大的不确定性。

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