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Flamelet modelling of non-premixed turbulent combustion with local extinction and re-ignition

机译:非预混湍流燃烧局部熄灭和重燃的小火焰建模

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Extinction and re-ignition in non-premixed turbulent combustion is investigated. A flamelet formulation accounting for transport along mixture fraction iso-surfaces is developed. A new transport term appears in the flamelet equations, which is modelled by a stochastic mixing approach. The timescale appearing in this model is obtained from the assumption that transport at constant mixture fraction is only caused by changes of the local scalar dissipation rate. The space coordinates appearing in this term can then be replaced by the mixture fraction and the scalar dissipation rate. The dissipation rate of the scalar dissipation rate appears as a diffusion coefficient in the new term. This is a new parameter of the problem and is called the re-ignition parameter. The is a new parameter of the problem and is called the re-ignition parameter. The resulting equations are simplified and stochastic differential equations for the scalar dissipation rate and the re-ignition parameter are formulated. The system of equations is solved using Monte Carlo calculations. The results show that the newly appearing transport term acts by modifying the S-shaped curve such that the lower turning point appears at higher scalar dissipation rate. In an a priori study, predictions using this model are compared with data from a direct numerical simulation of non-premixed combustion in isotropic turbulence simulating extinction and re-ignition.
机译:研究了非预混湍流燃烧的消光和重燃。开发了一种解释沿混合比等值面传输的小火焰配方。一个新的输运项出现在小火焰方程中,该方程通过随机混合方法进行建模。该模型中出现的时间尺度是基于这样的假设得出的,即恒定混合分数下的传输仅由局部标量耗散率的变化引起。然后可以用混合分数和标量耗散率代替此术语中出现的空间坐标。标量耗散率的耗散率在新术语中显示为扩散系数。这是问题的新参数,称为重新点火参数。是问题的新参数,称为重点火参数。对所得方程进行简化,并针对标量耗散率和重燃参数制定了随机微分方程。使用蒙特卡洛计算法求解方程组。结果表明,新出现的输运项通过修改S形曲线而起作用,从而较低的转折点以较高的标量耗散率出现。在先验研究中,将使用该模型的预测与模拟消光和重燃的各向同性湍流中非预混燃烧的直接数值模拟得到的数据进行了比较。

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