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CHARACTERIZATION OF A NITROGEN DILUTED HYDROGEN DIFFUSION FLAME FOR MODEL VALIDATION

机译:用于模型验证的氮气稀释氢气扩散火焰的表征

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Dilute hydrogen diffusion flames have been considered as a gas turbine combustion strategy that provides relatively low levels of NOx emissions for application in integrated gasification combined cycle power generation. These flames also represent a challenging environment for computational modeling efforts due to the complexity of molecular transport effects, turbulence-chemistry interaction, and near extinction flame conditions. In order to provide data for validation of computational modeling efforts, measurements of major species concentration and flame temperature were made in such a flame using spontaneous Raman scattering. Experimental results demonstrate the importance of differential species diffusion, which occurs due to the disparity between diffusion characteristics of hydrogen and nitrogen. Additionally, the flame temperatures observed were quite low relative to the equilibrium flame temperature, due to flame strain. This confirms the fact that suppression of the thermal mechanism of NOx formation plays a significant role in reducing NOx emissions from this type of flame.
机译:稀氢扩散火焰已被认为是燃气轮机燃烧策略,该策略提供了相对较低的NOx排放水平,可用于整体气化联合循环发电。由于分子传输效应,湍流-化学相互作用和接近灭绝的火焰条件的复杂性,这些火焰也代表了用于计算建模工作的挑战性环境。为了提供数据来验证计算建模工作,使用自发拉曼散射在这种火焰中进行了主要物质浓度和火焰温度的测量。实验结果证明了差异种扩散的重要性,这是由于氢和氮的扩散特性之间存在差异而引起的。另外,由于火焰应变,观察到的火焰温度相对于平衡火焰温度而言非常低。这证实了以下事实:抑制NOx形成的热机理在减少此类火焰中的NOx排放中起着重要作用。

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