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Visible wavelength Doppler Lidar for measurement of wind and aerosolprofiles during day and night,

机译:可见光多普勒激光雷达,用于白天和黑夜测量风和气溶胶剖面,

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Abstract: The University of Michigan's Space Physics Research Laboratory has constructed a mobile high-spectral-resolution Doppler lidar capable of measuring wind and aerosol loading profiles in the troposphere and lower stratosphere. The system uses a 3-W pulsed frequency-doubled Nd:YAG laser operating at 532 nm as the active source. Backscattered signal is collected by a 44.4-cm-diameter Newtonian telescope. A two axis mirror scanning system allows the instrument to achieve full sky coverage. A pair of Fabry-Perot interferometers in combination with a narrowband (0.1nm) interference filter are used to filter daylight background and provide a high spectral resolving element to measure the Doppler shift. In addition, the aerosol and molecular scattered components of the signal can be separated, giving a measure of the relative aerosol loading. Measurements have been made day and night in the boundary layer with vertical resolution of 100 m and a temporal resolution of approximately 5 minutes. Accuracy of the wind velocity is on the order of 1 to 2 m/s in the boundary layer. !17
机译:摘要:密歇根大学的空间物理研究实验室建造了一种移动式高光谱分辨率多普勒激光雷达,该激光雷达能够测量对流层和低平流层中的风和气溶胶负荷分布。该系统使用工作在532 nm的3W脉冲倍频Nd:YAG激光器作为有源光源。反向散射的信号由直径44.4厘米的牛顿望远镜收集。两轴镜面扫描系统使仪器可以实现全天覆盖。一对Fabry-Perot干涉仪与窄带(0.1nm)干涉滤光片结合使用,可以滤除日光背景并提供高光谱分辨元件来测量多普勒频移。另外,可以分离信号的气溶胶和分子散射成分,从而给出相对气溶胶负载的量度。已经在边界层中昼夜进行了测量,垂直分辨率为100 m,时间分辨率为大约5分钟。在边界层中,风速的精度约为1至2 m / s。 !17

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