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A nongray-wall emissivity model for the Wide-Band Correlated K-distribution method

机译:宽带相关型K分布法的非壁壁发射率模型

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The walls of combustion systems are usually assumed to be black or gray in radiative calculations, which may cause large errors. The Planck-function-weighted emissivity is usually used as the gray-wall emissivity when using the Wide-Band Correlated K-distribution method. This approach can demonstrate good accuracy when coupled with the emissivity-based optimized band interval approach proposed by Solovjov et al., 2013. To improve computational efficiency without losing accuracy, a nongray-wall emissivity model and an absorption-coefficient-based method for determining the band interval are proposed. The accuracy of nongray-wall and gray-wall emissivity models along with different approaches to determine the band intervals is evaluated in three ID isothermal and homogeneous cases bounded by fly-ash deposit, a high-temperature alloy, and soot deposit and a 3D fuel-air flame bounded by fly-ash deposit. The results show that the nongray-wall emissivity model is much more accurate than the gray-wall one when the number of bands is greater than 1. Coupled with the absorption-coefficient-based band interval approach, the nongray-wall emissivity model becomes more accurate when the number of bands is larger than 2, especially for low-temperature walls. It is sufficient to divide the entire spectrum into 4 bands for the cases tested here.
机译:燃烧系统的墙壁通常被认为是辐射计算中的黑色或灰色,这可能导致大错误。使用宽带相关的K分布方法时,普朗克函数加权发射率通常用作灰壁发射率。当与Solovjov等人提出的基于发射率的优化频段间隔方法耦合时,这种方法可以展示良好的准确性。为了提高计算效率而不失去准确度,非壁壁发射率模型和基于吸收系数的测定方法建议频带间隔。非磨土壁和灰壁发射率模型的精度以及不同方法以确定带间隔的三种ID等温和均匀壳体,由粉煤灰沉积物,高温合金和烟灰沉积物和3D燃料排出三个ID等温和均匀壳体 - 通过粉煤灰矿床界定的空气火焰。结果表明,当频带的数量大于1.耦合时,非壁壁发射率模型比灰墙更精确。与吸收系数的频带间隔方法相结合,非壁壁发射率模型变得更多频段数量大于2的准确性,特别是对于低温墙壁。将整个光谱划分为4个频段足以用于此处的情况。

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