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Development of Practical UV Rayleigh Lidar for Measuring Atmospheric Temperature Profiles in the Troposphere

机译:实用UV Rayleigh Lidar在对流层中测量大气温度曲线

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A new Rayleigh scattering lidar system at eye-safe 355nm ultraviolet wavelength has been developed for measuring vertical profiles of atmospheric temperature in the lower troposphere, based on the high-spectral resolution lidar (HSRL) technique using two narrow-band Fabry-Perot filters. The Doppler broadened width of the Rayleigh backscatter signal was measured for the temperature analysis. The central frequency and the width of the two filters are carefully selected to optimize the detection sensitivity of the filter. In order to reject the intense Mie backscattering component introduced in the Rayleigh signal, which affects the temperature accuracy, the third narrow-band filter has been installed to measure the Mie scattering intensity. A signal processing method has been developed to derive the temperature profile. In a preliminary experiment, it was shown that the temperature sensitivity of the filter is 0.4%/K and the measurement error is about 1K at 2km height.
机译:基于使用两个窄带法布里珀罗过滤器的高光谱分辨率LiDAR(HSRL)技术,开发了一种新的瑞利散射紫外波长,用于测量较低对流层的大气温度垂直型材。测量瑞利反向散射信号的多普勒宽度宽度,以进行温度分析。仔细选择中央频率和两个过滤器的宽度以优化过滤器的检测灵敏度。为了拒绝在瑞利信号中引入的强烈的MIE反向散射元件,这影响了温度精度,已经安装了第三窄带滤波器以测量MIE散射强度。已经开发了一种信号处理方法来导出温度曲线。在初步实验中,显示过滤器的温度敏感性为0.4%/ k,测量误差为2km高约1k。

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