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A UNIFIED PDF-FLAMELET MODEL FOR TURBULENT PREMIXED COMBUSTION

机译:湍流过混燃烧的统一PDF-火焰模型

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The calculation of turbulent premixed flames in the framework of the Probability Density Function (PDF) approach remains quite a challenging modeling problem because of the strong coupling that exists between micromixing and reaction in premixed flamelets. In the flamelet regime of turbulent premixed combustion, instantaneous progress variable gradients arc essentially fixed by these propagating flamelets. Consequently, the PDF evolution due to the mieromixing term cannot be handled without taking into account the reactive contribution itself. In this study, a generalization of the work of Pope and Anand (1984; Flamelet and Distributed Combustion in Premixed Turbulent Flames, Proc. Combust. Inst., vol. 20, pp. 403-410) is put forward to take into account the consequence of flamelet structure, but only when and where this structure is not perturbed by turbulence. In this manner, a criterion based on the ratio of the Kolmogorov length scale η_k to laminar flame width δ_L allows turbulent premixed combustion to be described with a unique model from flamelet to distributed combustion regime. The new unified model is applied to the propagation of one-dimensional turbulent premixed flame in prescribed turbulent flow conditions and to the case of a high-velocity piloted Bunsen burner.
机译:在概率密度函数(PDF)方法的框架内,湍流预混火焰的计算仍然是一个极具挑战性的建模问题,因为预混小火焰的微混合与反应之间存在强耦合。在湍流预混燃烧的小火焰状态下,瞬时传播变量梯度基本上由这些传播的小火焰固定。因此,如果不考虑反应性贡献本身,就无法处理由于微混合项导致的PDF演变。在这项研究中,提出了Pope和Anand(1984年;《预混湍流火焰中的小火焰和分布式燃烧》,Proc。Combust。Inst。,第20卷,第403-410页)的概括,以考虑到火焰结构的后果,但仅限于不受湍流干扰的结构。以这种方式,基于Kolmogorov长度尺度η_k与层流火焰宽度δ_L之比的准则允许用从小火焰到分散燃烧方案的独特模型描述湍流预混燃烧。新的统一模型适用于在规定的湍流条件下传播一维湍流预混火焰,以及应用于高速先导本生灯的情况。

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