首页> 外文会议>International symposium on combustion >LAMINAR PREMIXED HYDROGEN/AIR COUNTERFLOW FLAME SIMULATIONS USING FLAME PROLONGATION OF ILDM WITH DIFFERENTIAL DIFFUSION
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LAMINAR PREMIXED HYDROGEN/AIR COUNTERFLOW FLAME SIMULATIONS USING FLAME PROLONGATION OF ILDM WITH DIFFERENTIAL DIFFUSION

机译:层状预混氢气/空气逆流逆流使用火焰延长差分扩散的火焰延长

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The cost of including full kinetics in realistic computations remains extremely high. This has led many researchers to develop reduction techniques for the chemistry. These methods are generally valid only in a very limited range of equivalence ratio, pressure, or temperature and require extensive human time to develop the reduced schemes. Recently, an automatic method based on intrinsic low-dimensional manifolds (ILDM) has been proposed. Because of ILDM, the reduction of detailed reaction schemes is much simplified, leading to the fast generation of look-up tables containing the information corresponding to the reduced chemical schemes. Nevertheless, the ILDM method is not well suited to describe the low-temperature domain, since the dimension and therefore the complexity of the databases increase tremendously in this zone. In this work, we propose a new version of the ILDM method, called flame prolongation of ILDM (FPI), which enables us to solve the problem at low temperatures. We used laminar premixed free flames to extend the manifolds generated with ILDM, thus leading to smooth and accurate evolutions of the species along all the flame front. In order to demonstrate the interest of FPI, we computed the response of a premixed flame to straining using the double-premixed counterflow flame configuration. We show that using FPI, the correct evolution is obtained for all species from almost unstrained flames up to flames near extinction. The computational times are tremendously reduced with FPI in comparison with full chemistry.
机译:现实计算中包含完整动力学的成本仍然非常高。这使许多研究人员开发了化学的减少技术。这些方法通常仅在非常有限的等效比,压力或温度范围内有效,并且需要广泛的人类时间来发展减少的方案。最近,已经提出了一种基于固有低维歧管(ILDM)的自动方法。由于ILDM,详细反应方案的降低非常简化,导致快速产生包含与减少化学方案对应的信息的查找表。然而,ILDM方法不太适合描述低温域,因为维度,因此在该区域中数据库的复杂性增加。在这项工作中,我们提出了一种新版本的ILDM方法,称为VOLAME延长ILDM(FPI),这使我们能够在低温下解决问题。我们使用了Laminar预混的自由火焰来延伸液体产生的歧管,从而导致沿着所有火焰前面的物种的平滑和准确地演变。为了展示FPI的兴趣,我们计算了使用双预混逆流火焰配置来应对预混火焰的响应。我们表明,使用FPI,从几乎没有明细的火焰的所有物种都获得了正确的进化,从灭绝附近的火焰。与完整的化学相比,使用FPI,计算时间非常减少。

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