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首页> 外文期刊>International Journal of Heat and Mass Transfer >Assessing individual time-averaged emission and absorption correlations for large-scale turbulent pool fires
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Assessing individual time-averaged emission and absorption correlations for large-scale turbulent pool fires

机译:评估大型湍流池火灾的单个时间平均排放和吸收相关性

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摘要

A fundamental investigation of turbulence-radiation interaction (TRI) is presented in this paper, focused on the correlations that arise in the time-averaging of the radiative absorption and radiative emission. The analyses are based on transient data generated from fully-coupled, high-resolution large eddy simulations of a set of turbulent, large-scale pool fires. Coefficients that quantify the magnitude of the individual correlation are identified and, using the transient data, they are computed throughout the computational domain and compared to one another. Results show that turbulent fluctuations lead to an increase in both the mean emission and the mean absorption. For the latter, the increase is particularly pronounced in the hot gas plume region. In this region, the cross-correlation between the local absorption coefficient and the incident radiation accounts for no more than 15% of the total absorption, and disregarding it leads to negligible errors in the prediction of the mean radiation loss, which points to the applicability of the optically thin fluctuation approximation. Among the correlations in the time-averaged emission term, the temperature autocorrelation is the most important one, followed by the absorption coefficient-temperature cross-correlation. However, radiative transfer calculations considering different closure methods for the emission term evidence that accounting for the temperature autocorrelation alone is not sufficient for an accurate solution of the mean radiation field. Instead, all emission-TRI correlations must be considered for a proper representation of the mean radiative emission.
机译:本文提出了对湍流 - 辐射相互作用(TRI)的基本研究,重点关注在辐射吸收和辐射发射的时平时出现的相关性。分析基于一组湍流,大型池火灾的完全耦合,高分辨率大型涡流模拟产生的瞬态数据。定量定量单个相关性的幅度的系数并使用瞬态数据,它们在整个计算域中计算,并相互比较。结果表明,湍流波动导致平均发射和平均吸收增加。对于后者,在热气体羽流区域中的增加特别明显。在该区域中,局部吸收系数与入射辐射之间的互相关占总吸收的15%以上,并且忽略它导致预测平均辐射损失的误差,这指出了适用性光学薄波动近似。在时间平均排放项中的相关性中,温度自相关是最重要的,其次是吸收系数 - 温度互相关。然而,考虑到不同闭合方法的辐射转移计算,用于减排术语证据,其仅核对温度自相关的措施不足以用于平均辐射场的准确溶液。相反,必须考虑所有发射TRI相关性以用于平均辐射发射的适当表示。

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