雾环境高温蒸汽泄漏点光学探测波长选择研究

Wavelength selection for optical detection of high-temperature steam leakage points in fog environments

  • 摘要: 目的为了在雾环境下获得清晰的红外图像以准确判断高温蒸汽泄漏点位置,开展了雾环境中探测波长对红外成像质量影响研究。方法依据Mie理论,采用模拟计算探究了雾滴几何平均半径、几何标准偏差、水雾体积分数和光线路径长度对光谱透射率的影响,并利用光谱仪测量了雾环境中不同波长的红外辐射透射率。结果实验结果和模拟结果均表明,雾环境吸收特性具有明显的光谱选择性,在10μm~12μm波段透射率明显大于可见光和其他红外波段,选择该波段为探测波长可有效降低雾环境的干扰获得更高质量的高温蒸汽泄漏点红外图像。结论相关结论可为封闭、高剂量射线辐射空间等特殊场景高温蒸汽泄漏探测波长选择奠定理论基础。

     

    Abstract: ObjectivesThe problem of difficult detection of high-temperature steam leakage points in fog environments was studied. Methods Based on the Mie theory, numerical calculation methods were used to investigate the effects of the geometric standard deviation, water fog volume fraction, and light path length on spectral transmittance. An experimental platform was built in a laboratory environment to verify the simulation results. Results The results show that the wavelength band selection for optical detection of high-temperature steam leakage points in fog environments should focus on the long-wave infrared band, with the specific range determined to be 10μm~12μm. Conclusions This lays a theoretical foundation for the wavelength selection of high-temperature steam leakage detection in special scenarios such an industrial production environments, narrow spaces, enclosed spaces, and high-dose radiation spaces.

     

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