Effect of Low Temporal Resolution on the Uncertainty of Resolving Flame Speed of Moving Flames

IF 0.7 Q4 ENGINEERING, MECHANICAL
D. Shin
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引用次数: 0

Abstract

This paper analyzes the effect of low temporal resolution on the accuracy of determining the local flame speed for experimental measurements and simulations. Flame speed measurement of moving flames requires the evaluation of a temporal derivative of flame front motion. Measurements have limited temporal resolution, which can lead to a bias error in the calculation of flame speed. The error associated with the temporal resolution was derived in the leading order effect on sampling time. In order to demonstrate the error term, we employed numerical examples. Artificial flame solutions are generated by solving the G-equation with prescribed flow fields and fine spatial/temporal resolutions. By varying the sampling time step, we demonstrated the error can lead to negative values of the measured flame speed. Furthermore, when coarse sampling time steps are used, the calculated flame speed also exhibits a spurious curvature dependency. Lastly, the associated error can be estimated by spatial gradients of the flame front for convection dominated flows.
低时间分辨率对运动火焰火焰速度分辨不确定度的影响
本文分析了低时间分辨率对实验测量和模拟中确定局部火焰速度准确性的影响。移动火焰的火焰速度测量需要评估火焰前沿运动的时间导数。测量的时间分辨率有限,这可能导致火焰速度计算中的偏差误差。与时间分辨率相关的误差是在采样时间的前序效应中导出的。为了证明误差项,我们采用了数值例子。人工火焰解决方案是通过求解具有规定流场和精细空间/时间分辨率的G方程生成的。通过改变采样时间步长,我们证明了误差会导致测量的火焰速度为负值。此外,当使用粗略采样时间步长时,计算的火焰速度也表现出虚假的曲率依赖性。最后,相关误差可以通过对流主导流的火焰前沿的空间梯度来估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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自引率
50.00%
发文量
15
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