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Numerical modelling of unburned hydrocarbon emissions in gas engines with varied fuels

机译:不同燃料燃气发动机中未燃烧烃排放的数值模型

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摘要

A numerical model is developed for the prediction of unburned hydrocarbons (UHC) emissions in gas engines. Local UHC sources in the engine combustion chamber are simulated and the unburned fuel leaving the engine is calculated and compared with experimental data from a single cylinder research engine for different operating conditions. The calculation procedure is applicable for complex three dimensional geometries and regards the local flow and turbulence conditions. A hybrid model is proposed to integrate the detailed reaction kinetics via separate sub models coupled with Computational Fluid Dynamics (CFD). A high pressure turbulent flame propagation model is applied, being based on detailed reaction kinetic simulations of the laminar flame speeds for the engine conditions. Flame wall quenching, crevices and post-oxidation of UHC are treated as separate sub-models. The UHC emissions are solved as scalars to account for the convection and diffusion transport in the engine, incorporating a one-step post-oxidation model with detailed chemistry. The 3D-CFD results are validated with experiments, showing on one hand side the fidelity of the proposed numerical approach and on the other hand side the possibility to differentiate the different sources of UHC. Additionally a numerical study is conducted to investigate the influence of stoichiometric gas engines with exhaust gas recirculation. The model is applicable also for biogas engines with reduced reactivity.
机译:开发了一种数值模型,用于预测燃气发动机中未燃烧的碳氢化合物(UHC)排放。模拟发动机燃烧室中的局部UHC源,并计算出发动机的未燃烧的燃料,并与来自单缸研究发动机的实验数据进行比较,用于不同的操作条件。计算过程适用于复杂的三维几何形状,以及局部流动和湍流条件。提出了一种混合模型,通过与计算流体动力学(CFD)耦合的单独子模型来整合详细的反应动力学。施加高压湍流火焰传播模型,基于用于发动机条件的层状火焰速度的详细反应动力学模拟。 UHC的火焰壁淬火,裂缝和后氧化被视为单独的子模型。 UHC排放作为标量来解决,以考虑发动机中的对流和扩散传输,其中包含一个具有详细化学的一步后氧化模型。 3D-CFD结果用实验验证,在一方面侧面显示了所提出的数值方法的保真度,另一方面侧面有可能区分UHC的不同来源。另外,进行数值研究以研究与废气再循环的化学计量气体发动机的影响。该模型也适用于具有降低的反应性的沼气发动机。

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