首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >NUMERICAL INVESTIGATIONS OF NOX EMISSIONS OF A PARTIALLY PREMIXED BURNER FOR NATURAL GAS OPERATIONS IN INDUSTRIAL GAS TURBINE
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NUMERICAL INVESTIGATIONS OF NOX EMISSIONS OF A PARTIALLY PREMIXED BURNER FOR NATURAL GAS OPERATIONS IN INDUSTRIAL GAS TURBINE

机译:工业燃气轮机部分预混燃烧器燃烧器中NOx排放的数值研究

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In the present paper a numerical analysis of a low NOx partially premixed burner for industrial gas turbine applications is presented. The first part of the work is focused on the study of the premixing process inside the burner. Standard RANS CFD approach was used: k - ε turbulence model was modified and calibrated in order to find a configuration able to fit available experimental profiles of fuel/air concentration at the exit of the burner. The resulting profiles at different test points have been used to perform reactive simulations of an experimental test rig, where exhaust NOx emissions were measured. An assessment of the turbulent combustion model was carried out with a critical investigation of the expected turbulent combustion regimes in the system and taking into account the partially premixed nature of the flame due to the presence of diffusion type pilot flames. A reliable numerical setup was discovered by comparing predicted and measured NOx emissions at different operating conditions and at different split ratio between main and pilot fuel. In the investigated range, the influence of the premixer in the NOx formation rate was found to be marginal if compared with the pilot flame one. The calibrated numerical setup was then employed to explore possible modifications to fuel injection criteria and fuel split, with the aim of minimizing exhaust NOx emissions. This preliminary numerical screening of alternative fuel injection strategies allowed to define a set of advanced configurations to be investigated in future experimental tests.
机译:在本文中,对用于工业燃气轮机的低NOx部分预混合燃烧器进行了数值分析。工作的第一部分专注于燃烧器内部预混合过程的研究。使用了标准的RANS CFD方法:修改并校准了k-ε湍流模型,以找到能够适合燃烧器出口处燃料/空气浓度的可用实验曲线的配置。在不同测试点处得到的轮廓已用于执行实验性测试台的反应性模拟,在该测试台上测量了废气中的NOx排放量。对湍流燃烧模型进行了评估,并对系统中预期的湍流燃烧状态进行了严格研究,并考虑了由于存在扩散型引燃火焰而导致的火焰的部分预混特性。通过比较在不同工况下以及在主燃油和引燃燃油之间的分流比不同时的预测和测量的NOx排放量,发现了可靠的数值设置。在研究范围内,与先导火焰相比,预混合器对NOx生成速率的影响很小。然后,使用校准的数值设置来探索对燃油喷射标准和燃油分配的可能修改,以最大程度地减少废气中的NOx排放量。替代燃料喷射策略的初步数值筛选可以定义一组高级配置,以便在将来的实验测试中进行研究。

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