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Transported PDF Calculations of a Turbulent, Non-Premixed, Non-Piloted, Hydrogen-Air Flame with Differential Diffusion

机译:带有差分扩散的湍流,非预混合,非引燃氢空气火焰的PDF传输计算

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Diffusive mass and heat fluxes cause unclosed terms in transported probability density function (TPDF) methods which need to be modeled accurately, in order to account for the effects as local extinction or stabilization of turbulent flames. The modeling of flame stabilization is addressed in this work with the example a non-piloted, non-premixed hydrogen-air flame. Experimental data suggest that differential diffusion plays a major role at the root of this flame. To account for this effect, a diffusion model recently introduced for TPDF/LES (Large-Eddy-Simulation) methods is modified and applied in RANS (Reynolds-Averaged-Navier Stokes) calculations. Several computations employing this model with varying particle-numbers and grid-resolutions demonstrate the capability of the diffusion model to take differential diffusion into account and thus improve flame stabilization.
机译:扩散质量和热通量导致传输概率密度函数(TPDF)方法中的不明项,需要对它们进行精确建模,以解决湍流火焰的局部熄灭或稳定化的影响。在这项工作中,以非引燃,未预混合的氢空气火焰为例,解决了火焰稳定化的建模问题。实验数据表明,差异扩散在火焰的根部起主要作用。为了解决此问题,最近针对TPDF / LES(大涡模拟)方法引入的扩散模型已修改,并应用于RANS(雷诺-平均Navier斯托克斯)计算中。使用具有变化的粒子数和网格分辨率的该模型的若干计算证明了扩散模型考虑到微分扩散并因此改善了火焰稳定性的能力。

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