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Measurements of the flame emissivity and radiative properties of particulate medium in pulverized-coal-fired boiler furnaces by image processing of visible radiation

机译:可见辐射图像处理测量粉煤燃烧锅炉炉中颗粒介质的火焰发射率和散热性能

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Due to the complicated processes for coal particles burning in industrial furnaces, their radiative properties, such as the absorption and scattering coefficients, which are essential to make reliable calculation of radiative transfer in combustion computation, are hard to be given exactly by the existing methods. In this paper, multiple color image detectors were used to capture approximately red, green, and blue monochromatic radiative intensity images in the visible wavelength region, and the flame emissivity and the radiative properties of the particulate media in three pulverized-coal-fired boiler furnaces were got from the flame images. It was shown that as the load increased, the flame emissivity and the radiative properties increased too; these radiative parameters had the largest values near the burner zone, and decreased along the combustion process. Compared with the combustion medium with a low-volatile anthracite coal burning in a 670 t/h boiler, the emissivity and the absorption coefficient of the medium with a high-volatile bituminous coal burning in a 1025 t/h boiler were smaller near the outlet zone, but were larger near the burner zone of the furnace, due to the significant contribution of soot to the radiation. This work will be of practical importance in modeling and calculating the radiative heat transfer in combustion processes, and improving the technology for in situ, multi-dimensional visualization of large-scale combustion processes in coal-fired furnaces of power plants.
机译:由于在工业炉中燃烧的煤颗粒的复杂过程,它们的辐射性能,例如吸收和散射系数,这对于在现有的方法中难以确切地确切地给出必要的吸收和散射系数,例如对燃烧计算中的燃烧计算中的辐射转移是必不可少的。在本文中,使用多种彩色图像探测器在可见波长区域中捕获大致红色,绿色和蓝色单色辐射强度图像,以及三个粉煤燃烧锅炉炉中的颗粒介质的火焰发射率和火焰发射率和散热性能来自火焰图像。结果表明,随着负荷增加,火焰发射率和辐射性能也增加;这些辐射参数在燃烧器区附近具有最大值,并沿燃烧过程减少。与燃烧介质与低挥发性无烟煤燃烧的燃烧介质相比,在670T / H锅炉中燃烧,发射率和培养基的吸收系数在1025T / h锅炉中燃烧的高挥发性烟煤较少靠近出口较小区域,但炉子燃烧器区附近较大,由于烟灰对辐射的显着贡献。这项工作将在建模和计算燃烧过程中的辐射热传递方面具有实际重要性,提高燃煤炉中的大规模燃烧过程的技术,改善了大规模燃烧过程的技术。

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