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Compressibility Effects on the Scalar Dissipation Rate

机译:压缩效应对标量耗散率

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Scalar dissipation rate plays an important role in combustion, especially for fast chemistry in non-premixed flames. Even for finite-rate chemistry, it is a parameter of major importance in models based on flamelets, probability density function methods, and conditional moment closures. Compressibility can influence the behavior of scalar dissipation but existing models do not consider them in the form of large dilatational effects, which are present in combustion in high-speed propulsion systems such as scramjets in hypersonic flight. This paper considers these effects on the scalar dissipation rate, in particular its mean value, spectral density, probability density function, as well the alignment of the scalar gradient with the strain field of the flow. The major result of this study is that the majority of the compressibility effects on inertial-type scales can be taken into account if the classical scaling laws of incompressible turbulence are rescaled by taking only the solenoidal contributions. However, additional effects of compressibility need to be considered at smaller scales.
机译:标量耗散率在燃烧中发挥着重要作用,特别是在非预混火焰中的快速化学。即使对于有限速率化学,它也是基于火焰,概率密度函数方法和条件时刻封闭模型的主要重要性的参数。可压缩性可以影响标量耗散的行为,但现有的模型不考虑它们的形式大的扩张效果,这在高速推进系统中存在于高速推进系统中的燃烧中,如超声波飞行中的瘙痒症。本文考虑了对标量耗散率的这些影响,特别是其平均值,光谱密度,概率密度函数,以及标量梯度与流动的应变场的对准。本研究的主要结果是,如果通过仅采用电磁素贡献,可以考虑对惯性型尺度的大部分对惯性型尺度的可压缩性效应。然而,需要在较小的尺度上考虑压缩性的额外效果。

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