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The combustion tuning methodology of an industrial gas turbine using a sensitivity analysis

机译:使用灵敏度分析的工业燃气轮机燃烧调节方法

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This paper presents the results of combustion performance testing of a 5.25 MWe industrial gas turbine which features a conical counter-flow double-swirl stabilized, premixed combustor and the Combustion Tuning methodology using a Sensitivity Analysis (abbreviated to CTSA). The combustion performance test was conducted in an atmospheric pressure, optically accessible, real engine scale combustor. The atmospheric rig and real engine correlation was verified by comparing real engine data which were gathered from high pressure tests. NOx and CO emissions, combustor temperature at the fuel nozzle, dump plane and exhaust, dynamic pressure and flame structure, using planer laser induced fluorescence, were investigated with respect to power load and ambient temperature. To enhance the NOx and CO emission performances with stable combustion, the relative sensitivities of five control parameters were analyzed, and on the basis of sensitivity analysis data, combustion tuning testing was conducted. By using the CTSA, NOx emission in exhaust gas was reduced from 18 to 2.2 ppm at base load, with high combustion efficiency (>99.9%), and very little pressure fluctuation (P_(rms) < 0.1 kPa).
机译:本文介绍了5.25 MWe工业燃气轮机的燃烧性能测试结果,该燃气轮机具有锥形逆流双旋流稳定,预混燃烧器和使用灵敏度分析(缩写为CTSA)的燃烧调整方法。燃烧性能测试是在大气压,光学可接近的实际发动机燃烧室中进行的。通过比较从高压测试中收集的真实发动机数据,验证了大气钻机和真实发动机的相关性。利用平面激光诱导荧光,研究了NOx和CO排放,燃料喷嘴处的燃烧室温度,倾卸面和排气,动压和火焰结构,并分别针对功率负载和环境温度进行了研究。为了提高稳定燃烧过程中NOx和CO的排放性能,分析了五个控制参数的相对灵敏度,并在灵敏度分析数据的基础上进行了燃烧调整试验。通过使用CTSA,基本负荷下废气中的NOx排放量从18 ppm降低到2.2 ppm,燃烧效率高(> 99.9%),压力波动很小(P_(rms)<0.1 kPa)。

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