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首页> 外文期刊>Flow, Turbulence and Combustion >Effects of Turbulence on Self-sustained Combustion in Premixed Flame Kernels: A Direct Numerical Simulation (DNS) Study
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Effects of Turbulence on Self-sustained Combustion in Premixed Flame Kernels: A Direct Numerical Simulation (DNS) Study

机译:湍流对预混火焰核自持燃烧的影响:直接数值模拟(DNS)研究

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摘要

The effects of mean flame radius and turbulence on self-sustained combustion of turbulent premixed spherical flames in decaying turbulence have been investigated using three-dimensional direct numerical simulations (DNS) with single step Arrhenius chemistry. Several flame kernels with different initial radius or initial turbulent field have been studied for identical conditions of thermo-chemistry. It has been found that for very small kernel radius the mean displacement speed may become negative leading ultimately to extinction of the flame kernel. A mean negative displacement speed is shown to signify a physical situation where heat transfer from the kernel overcomes the heat release due to combustion. This mechanism is further enhanced by turbulent transport and, based on simulations with different initial turbulent velocity fields, it has been found that self-sustained combustion is adversely affected by higher turbulent velocity fluctuation magnitude and integral length scale. A scaling analysis is performed to estimate the critical radius for self-sustained combustion in premixed flame kernels in a turbulent environment. The scaling analysis is found to be in good agreement with the results of the simulations.
机译:使用单步阿雷尼乌斯化学的三维直接数值模拟(DNS),研究了平均火焰半径和湍流对湍流预混球形火焰在衰减湍流中自持燃烧的影响。对于相同的热化学条件,已经研究了几种具有不同初始半径或初始湍流场的火焰核。已经发现,对于非常小的核半径,平均位移速度可能变为负值,最终导致火焰核熄灭。示出了平均负位移速度,其表示物理情况,其中来自籽粒的热传递克服了由于燃烧引起的热释放。通过湍流输送进一步增强了该机理,并且基于具有不同初始湍流速度场的模拟,已经发现自持燃烧受到较高的湍流速度波动幅度和积分长度尺度的不利影响。进行定标分析以估计在湍流环境中预混合火焰核中自持燃烧的临界半径。发现缩放分析与仿真结果非常吻合。

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