与预混合湍流燃烧中反应性标量梯度演变相关的时间尺度:直接数值模拟分析

Fire Pub Date : 2024-02-29 DOI:10.3390/fire7030073
N. Chakraborty, C. Dopazo
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引用次数: 0

摘要

反应进展变量梯度的分数变化取决于火焰内的流动法向应变,也取决于反应速率及其分子扩散传输的相应法向梯度。通过直接数值模拟(DNS)数据库,分析了火焰内法向应变率的统计行为以及反应速率和分子扩散速率法向梯度的贡献。研究发现,火焰法向应变与分子扩散速率的火焰法向梯度之间的相互作用控制着预热区的反应性标量梯度传输,在卡尔洛维茨数较小的情况下,湍流应变和分子扩散的时间尺度具有可比性。然而,当卡尔洛维茨数较高时,分子扩散的时间尺度会小于湍流应变的时间尺度。相比之下,火焰的反应区和热产物区大部分不受湍流影响,该区域的反应性标量梯度传输由分子扩散的火焰法向梯度和化学反应速率之间的相互作用决定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Timescales Associated with the Evolution of Reactive Scalar Gradient in Premixed Turbulent Combustion: A Direct Numerical Simulation Analysis
The fractional change in the reaction progress variable gradient depends on the flow normal straining within the flame and also upon the corresponding normal gradients of the reaction rate and its molecular diffusion transport. The statistical behaviours of the normal strain rate and the contributions arising from the normal gradients of the reaction rate and molecular diffusion rate within the flame were analysed by means of a Direct Numerical Simulation (DNS) database of statistically planar turbulent premixed flames ranging from the wrinkled/corrugated flamelets regime to the thin reaction zones regime. The interaction of flame-normal straining with the flame-normal gradient of molecular diffusion rate was found to govern the reactive scalar gradient transport in the preheat zone, where comparable timescales for turbulent straining and molecular diffusion are obtained for small values of Karlovitz numbers. However, the molecular diffusion timescale turns out to be smaller than the turbulent straining timescale for high values of Karlovitz numbers. By contrast, the reaction and hot product zones of the flame remain mostly unaffected by turbulence, and the reactive scalar gradient transport in this zone is determined by the interaction between the flame-normal gradients of molecular diffusion and chemical reaction rates.
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