首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >NUMERICAL MODELLING OF NOX EMISSIONS AND FLAME STABILIZATION MECHANISMS IN GAS TURBINE BURNERS OPERATING WITH HYDROGEN AND HYDROGEN-METHANE BLENDS
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NUMERICAL MODELLING OF NOX EMISSIONS AND FLAME STABILIZATION MECHANISMS IN GAS TURBINE BURNERS OPERATING WITH HYDROGEN AND HYDROGEN-METHANE BLENDS

机译:用氢气和氢甲烷混合物运行的燃气轮机燃烧器中NOx排放和火焰稳定机制的数值模型

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Main objective of this paper is to assess the capability of numerical models in predicting NO_x emissions and flame stabilization mechanisms of a heavy-duty gas turbine burner when operated with hydrogen and hydrogen-methane blends. Effort focused on the selection of the proper input to pre-tabulated Flamelet Generation Manifold combustion model. A dedicated sensitivity to laminar flame speed formulation has been performed as well, since it primarily affects flame stabilization through the closure term of the progress variable transport equation. Available NO_x emissions data from full scale annular combustor rig test with hydrogen-air mixtures are presented first in this paper: test results have been used to validate the numerical setup for the reference geometry. Then, the model has been used to predict NO_x emissions of alternative geometries in case of pure hydrogen, allowing screening of viable options to reduce the scope of a dedicated test campaign. Concerning flame stabilization mechanisms, simulations have been carried out for a reference geometry first: data from dedicated tests have been used to specialize the tool. Results of modified geometries are shown, to explore the effect of different fuel injection patterns or internal channel modifications. Based on the analysis outcomes, a discussion is provided regarding advantages and drawbacks of each proposed solution, as well as the ability of modelling setup in catching varied flame stabilization mechanisms.
机译:本文的主要目的是评估数值模型在用氢气和氢气 - 甲烷共混物操作时预测重型燃气涡轮燃烧器的NO_X排放和火焰稳定机制。努力专注于选择适当输入到预制表前的爆破发电歧管燃烧模型。已经进行了对层压速度制剂的专用敏感性,因为它主要通过进度可变传输方程的闭合项影响火焰稳定性。本文首先介绍了具有氢气混合物的全尺度环形燃烧器钻机测试的可用NO_X排放数据:已使用测试结果来验证参考几何体的数值设置。然后,该模型已被用于预测纯氢气的替代几何形状的NO_X排放,允许筛选可行的选项以减少专用测试活动的范围。关于火焰稳定机制,已经为参考几何进行了仿真首先进行:专用测试的数据已用于专门化工具。显示了改性几何形状的结果,探讨了不同燃料喷射图案或内部通道修改的效果。基于分析结果,提供了关于每个提出的解决方案的优点和缺点的讨论,以及在捕获各种火焰稳定机制时建模设置的能力。

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