Volume 45 Issue 2
Mar.  2016
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Shi Dongping, Wu Chao, Li Zijun, Jia Nan, Pan Wei. Optimized tri-wavelength infrared temperature measurement introducing dimensionless model and bending coefficient[J]. Infrared and Laser Engineering, 2016, 45(2): 204006-0204006(6). doi: 10.3788/IRLA201645.0204006
Citation: Shi Dongping, Wu Chao, Li Zijun, Jia Nan, Pan Wei. Optimized tri-wavelength infrared temperature measurement introducing dimensionless model and bending coefficient[J]. Infrared and Laser Engineering, 2016, 45(2): 204006-0204006(6). doi: 10.3788/IRLA201645.0204006

Optimized tri-wavelength infrared temperature measurement introducing dimensionless model and bending coefficient

doi: 10.3788/IRLA201645.0204006
  • Received Date: 2015-06-10
  • Rev Recd Date: 2015-07-20
  • Publish Date: 2016-02-25
  • Based on the basic theory of infrared radiation, infrared tri-wavelength vectors group altering low coupling between emissivity and infrared temperature measurement was derived to isolate the object emissivity and infrared temperature measurement. In order to optimize the tri-wavelength vectors group, a non-dimensional emissivity model was established and the most suitable wavelength range was identified. Aiming at optimizing the linear function of emissivity, the bending index n was introduced. The appropriate wavelength range to guarantee exactness of result of tri-wavelength vectors group was presented. The tri-wavelength measurement was demonstrated in a laboratory experiment with four sulfide ore samples. The results show that the fitting of tri-wavelength measurement with true temperature is better than that of common infrared temperature measurement. The fractional error of tri-wavelength measurement significantly is less than the common. The availability and accuracy of tri-wavelength measurement are verified. The tri-wavelength measurement ensures the measurement accuracy as well as expands the scope of common thermal infrared imager application and ensures the numerical accuracy of infrared prediction in the spontaneous combustion of sulfide ores.
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    [6] Li Yunhong, Ma Rong, Zhang Heng, et al. Dual waveband colori-metric temperature accurate measurement technology[J]. Infrared and Laser Engineering, 2015, 44(1):27-34.(in Chinese)李云红, 马蓉, 张恒, 等. 双波段比色精确测温技术[J]. 红外与激光工程, 2015, 44(1):27-34.
    [7] Shu Rui, Zhou Yangping, Lu Chunlian. Best detection wavelength bands selection method based on multispectral radiation differenceY[J]. Infrared and Laser Engineering, 2014, 43(8):2506-2512.
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    [13] Yang Zhen, Zhang Shicheng, Yang Li. Calculation of infrared temperature measurement on non-lambertian objects[J]. Spectroscopy and Spectral Analysis, 2010, 30(8):2093-2098.(in Chinese)杨桢, 张士成, 杨立. 非朗伯体红外测温计算研究[J]. 光谱学与光谱分析, 2010, 30(8):2093-2098.
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    [15] Li Zijun, Shi Dongping, Wu Chao, et al. Infrared thermography for prediction of spontaneous combustion of sulfide ores[J]. Transactions of Nonferrous Metals Society of China, 2012, 22:3095-3101.
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Optimized tri-wavelength infrared temperature measurement introducing dimensionless model and bending coefficient

doi: 10.3788/IRLA201645.0204006
  • 1. School of Resources and Safety Engineering,Central South University,Changsha 410083,China

Abstract: Based on the basic theory of infrared radiation, infrared tri-wavelength vectors group altering low coupling between emissivity and infrared temperature measurement was derived to isolate the object emissivity and infrared temperature measurement. In order to optimize the tri-wavelength vectors group, a non-dimensional emissivity model was established and the most suitable wavelength range was identified. Aiming at optimizing the linear function of emissivity, the bending index n was introduced. The appropriate wavelength range to guarantee exactness of result of tri-wavelength vectors group was presented. The tri-wavelength measurement was demonstrated in a laboratory experiment with four sulfide ore samples. The results show that the fitting of tri-wavelength measurement with true temperature is better than that of common infrared temperature measurement. The fractional error of tri-wavelength measurement significantly is less than the common. The availability and accuracy of tri-wavelength measurement are verified. The tri-wavelength measurement ensures the measurement accuracy as well as expands the scope of common thermal infrared imager application and ensures the numerical accuracy of infrared prediction in the spontaneous combustion of sulfide ores.

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