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Incoherent Doppler LIDAR for continuous measurement of wind and aerosol profiles

机译:非相干多普勒激光雷达可连续测量风和气溶胶剖面

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The University of Michigan Space Research Laboratory has developed a mobile, high spectral resolution incoherent Doppler lidar capable of measuring wind and aerosol loading profiles in the troposphere and lower stratosphere. The system uses a 3 Watt pulsed frequency doubled Nd:YAG laser operating at 532 nm. The 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. Active feedback control of key instrument elements provides an overall instrument stability of better than 1 m/s. A pair of Fabry-Perot interferometers in combination with a narrowband (0.05 nm) 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 meters and a temporal resolution of approximately 6 minutes. Accuracy of the wind velocity is on the order of 1-2 m/s in the boundary layer. Continuous measurements on this temporal scale should prove highly useful in parameterizing atmospheric aerosol movement, cloud evolution, and wind field variability.
机译:密歇根大学太空研究实验室开发了一种移动式,高光谱分辨率的非相干多普勒激光雷达,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3瓦脉冲频率加倍的Nd:YAG激光器,工作波长为532 nm。反向散射的信号由直径为44.4 cm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。关键仪器元件的主动反馈控制可提供优于1 m / s的整体仪器稳定性。一对Fabry-Perot干涉仪与窄带(0.05 nm)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米,时间分辨率为大约6分钟。边界层的风速精度约为1-2 m / s。在这个时间尺度上的连续测量应该被证明对参数化大气气溶胶运动,云的演化和风场的可变性非常有用。

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