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Study of an improved two-colour method integrated with the emissivity ratio model and its application to air- and oxy-fuel flames in industrial furnaces

机译:与发射率比模型集成的改进双色方法及其在工业炉中的空气和氧气火焰中的应用

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摘要

Inspired by the multi-wavelength method, the present work innovatively introduces an easier-to-describe emissivity ratio model to replace the customary grey body assumption, thus polishing the algorithm of the traditional two-colour method. The precision of this method was verified with a blackbody furnace, for which the relative errors were within +/- 1.50%. In situ experiments show that the air-coal flame in a stokerfeed boiler is significantly close to a grey body over the detected wavelength range of 600-1000 nm, except for the emission/ absorption lines, and a nearly negligible disparity (25.58 K) is found between the temperature outcome of the improved method and that of the traditional method. The oxy-coke flame in a pilot-scale test facility, however, differs from a grey body to a certain degree within that range, resulting in the deviation of the temperature obtained by the traditional method from that obtained by the improved method by more than 190 K. Obviously, the traditional method is no longer valid in this case. Thus, the two-colour method is sensitive to emissivity variations of the target, and the grey body assumption incurs distinct restrictions on application of the traditional method, thereby highlighting the advantages of the improved method.
机译:通过多波长法的启发,本作创新地引入了更容易描述的发射率比模型来取代习惯性灰度的假设,从而抛光传统双色方法的算法。用黑体炉验证该方法的精度,相对误差在+/- 1.50%内。原位实验表明,除了发射/吸收线之外,在600-1000nm的检测波长范围内明显接近灰色体的空气 - 煤火在600-1000nm的灰色体上显着靠近灰色体,以及几乎可忽略的差距(25.58k)是发现在改进方法的温度结果与传统方法的温度结果之间。然而,在导型测试设施中的氧气焦炭火焰与灰色体不同于该范围内的一定程度,导致通过传统方法获得的温度从通过改进的方法获得的更远而偏差190 K.显然,传统方法在这种情况下不再有效。因此,双色方法对目标的发射率变化敏感,并且灰色身体假设对传统方法的应用发生了不同的限制,从而突出了改进方法的优点。

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