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Numerical assessment of subgrid scale models for scalar transport in large-eddy simulations of hydrogen-enriched fuels

机译:富氢燃料大涡模拟中标量运输子网格规模模型的数值评估

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摘要

A comparison of two different models addressing the scalar transport in large-eddy simulations is conducted for a non-reacting jet and an experimental flame. A simple approach based on a gradient diffusion closure is compared against the linear-eddy model in the context of hydrogen-enriched non-reacting fuel jets and flames burning hydrogen-enriched mixtures. The results show that the gradient diffusion model is not valid as a subgrid scale model for large-eddy simulations of mixtures containing hydrogen. It produces unphysical scalar fields with unrealistic temperature distributions. Approaches based on the linear-eddy model can be used instead to obtain appropriate representation of the scalar field and more accurate predictions of the scalar transport and the temperature field.
机译:针对未反应的射流和实验火焰,对处理大涡流模拟中标量传输的两种不同模型进行了比较。在富氢非反应燃料射流和燃烧富氢混合物的火焰中,将基于梯度扩散封闭的简单方法与线性涡流模型进行了比较。结果表明,梯度扩散模型不适用于大网格模拟含氢混合物的子网格规模模型。它产生具有不切实际的温度分布的非物理标量场。可以代替使用基于线性涡流模型的方法来获得标量场的适当表示以及标量输运和温度场的更准确的预测。

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