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A numerical method to predict flame fractal dimension during gas explosion

机译:预测瓦斯爆炸过程中火焰分形维数的数值方法

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摘要

Accurate prediction of the flame propagation velocity during a gas explosion is essential to assess its consequences and to evaluate the risk level. The propagating premixed flame is self-turbulized due to the hydrodynamic instability, resulting in a fractal flame structure. It is therefore important for accurate prediction of flame speed to understand the flame's fractal structure in detail and to predict its fractal dimension in particular. Numerical simulations of spherically-propagating flames have been previously attempted for such purposes. There are, however, difficulties to accurately predict the fractal dimension from the result of the numerical simulation of a spherically-propagating flame. In this study, we propose a method to easily predict the fractal dimension based on the numerical simulation of a planar flame. Planar flame propagation is simulated for different sizes of computational domain. The fractal dimension can be determined from the dependence of flame speed on computational domain size. The determined fractal dimension is favorably compared with previous experimental results.
机译:在评估气体爆炸过程中火焰传播速度的准确预测对于评估其后果和评估风险水平至关重要。由于流体动力不稳定,正在传播的预混火焰会自湍流,从而形成分形火焰结构。因此,准确了解火焰的分形结构,尤其是预测其分形维数对于准确预测火焰速度非常重要。出于这种目的,先前已经尝试过球形传播火焰的数值模拟。然而,从球形传播火焰的数值模拟结果难以准确地预测分形维数。在这项研究中,我们提出了一种基于平面火焰的数值模拟轻松预测分形维数的方法。针对不同大小的计算域模拟了平面火焰传播。分形维数可以根据火焰速度对计算域大小的依赖性来确定。将确定的分形维数与以前的实验结果进行比较。

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