首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >LONG-TERM NOX EMISSION BEHAVIOR OF HEAVY DUTY GAS TURBINES: AN APPROACH FOR MODEL-BASED MONITORING AND DIAGNOSTICS
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LONG-TERM NOX EMISSION BEHAVIOR OF HEAVY DUTY GAS TURBINES: AN APPROACH FOR MODEL-BASED MONITORING AND DIAGNOSTICS

机译:重型燃气轮机的长期NOx排放行为:基于模型的监测和诊断方法

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Accurate monitoring of gas turbine performance is a means to an early detection of performance deviation from the design point and thus to an optimized operational control. In this process, the diagnosis of the combustion process is of high importance due to strict legal pollution limits as aging of the combustor during operation may lead to an observed progression of NOx emissions. The method presented here features a semi-empirical NOx formulation incorporating aging for the GT24/GT26 heavy duty gas turbines: Input parameters to the NOx-correlation are processed from actual measurement data in a simplified gas turbine model. Component deterioration is accounted for by linking changes in air flow distribution and control parameters to specific operational measurements of the gas turbine. The method was validated on three different gas turbines of the GE GT24/GT26 fleet for part- and baseload operation with a total of 374,058 long-term data points (5 min average), corresponding to a total of 8.5 years of observation, while only commissioning data was used for the formulation of the NOx correlation. When input parameters to the correlation are adapted for aging, the NOx prediction outperforms the benchmark prediction method without aging by 36.7, 54.0 and 26.7 % in terms of RMSE yield- ing a root-mean-squared error of 1.26,1.81 and 2.99ppm for the investigated gas turbines over a three year monitoring period.
机译:准确监控燃气轮机性能是一种从设计点及早发现性能偏差并由此优化运行控制的方法。在此过程中,由于严格的法律污染限制,燃烧过程的诊断非常重要,因为燃烧器在运行期间的老化可能会导致观察到的NOx排放的发展。本文介绍的方法具有结合GT24 / GT26重型燃气轮机老化的半经验NOx配方:在简化的燃气轮机模型中,根据实际测量数据处理NOx相关性的输入参数。通过将气流分布和控制参数的变化与燃气轮机的特定运行测量值联系起来,可以解决部件变质的问题。该方法已在GE GT24 / GT26机队的三种不同燃气轮机上进行了部分负荷和基本负荷运行的验证,总共有374,058个长期数据点(平均5分钟),相当于总共8.5年的观测时间,而仅调试数据用于制定NOx相关性。当相关性的输入参数适合老化时,就RMSE而言,NOx预测的性能优于基准预测方法的36.7%,54.0%和26.7%,而RMSE的均方根误差为1.26、1.81和2.99ppm在三年的监测期内调查了燃气轮机。

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