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INDEPENDENT CALIBRATION OF WATER VAPOR RAMAN LIDAR BY USING ADDITIONAL ELASTIC MEASUREMENTS AT WATER VAPOR RAMAN WAVELENGTH

机译:通过在水蒸气拉曼波长下使用额外的弹性测量来独立校准水蒸气拉曼延线的

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A new method for independent calibration of water vapor Raman lidar by using additional measurements of elastic signals at water vapor Raman wavelength was introduced. The water vapor mixing ratio calibration constant was derived from nitrogen mixing ratio calibration constant and Rayleigh to water vapor Raman backscattering cross section ratio. The nitrogen mixing ratio calibration constant with uncertainties of 1~2% can be determined from the nitrogen mixing ratio measurement in an aerosol-free zone in the upper troposphere with the additional elastic measurement and nitrogen Raman measurement, the Rayleigh to water vapor Raman backscattering cross section ratio can be calculated with uncertainties of about 8%, or can be determined experimentally with uncertainties of less than 5%. Using the experimental cross section ratio, a total uncertainty of the water vapor calibration less than 6% is possible to achieve. Because this calibration method utilizes actual lidar signals in nitrogen and water vapor detection channels, the calibration can fully capture lidar state changes.
机译:引入了通过使用在水蒸气拉曼波长下使用额外测量弹性信号的水蒸气拉曼立激利雷达的新方法。水蒸气混合比校准常数衍生自氮气混合比校准常数和瑞利到水蒸气拉曼反向散射截面比。在上层对流层中的氮气混合比测量中测量的不确定性,氮气混合比率校准常数在上层对流层中的氮气和氮气拉曼测量,瑞利到水蒸气拉曼反向散射十字架段比可以用约8%的不确定性计算,或者可以通过小于5%的不确定性确定。使用实验横截面比,可以实现小于6%的水蒸气校准的总不确定性。因为这种校准方法利用氮气和水蒸气检测通道中的实际激光雷达信号,所以校准可以完全捕获LIDAR状态的变化。

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