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New remote sensing technique for lidar monitoring of atmospheric turbulence

机译:激光雷达监测大气湍流的新遥感技术

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Abstract: A new remote sensing technique is proposed for determining the turbulent parameters of the atmosphere using a single-ended lidar system. This technique is based on the enhanced backscattering effect and is insensitive to the scattering volume averaging effect on the intensity fluctuations of the reflected wave and the sounding beam. The corresponding measurements are independent of the turbulent scintillation spectrum and that permits the use of high power pulsed lasers with a relatively low repetition rate for determining the refractive index structure characteristic C$- n$/$+2$/, its vertical profile C$-n$/$+2$/(h) and inner scale of turbulence $EL$-o$/ in the atmosphere. A theory of the method is developed, and the conditions are obtained for observing the backscattering amplification effect in the atmosphere with a laser beam scattered by aerosol. The signal-to-noise ratio and the sensitivity of the measured quantities to the inner scale of turbulence $EL$-o$/ variations are estimated. A planned demonstration of this technique in the boundary layer of the atmosphere with an eyesafe lidar which has been developed at Georgia Tech is discussed. !24
机译:摘要:提出了一种新的遥感技术,用于使用单端激光雷达系统确定大气的湍流参数。该技术基于增强的反向散射效果,并且对反射波和声束强度波动的散射体积平均效果不敏感。相应的测量结果独立于湍流闪烁光谱,并允许使用重复率相对较低的高功率脉冲激光器来确定折射率结构特征C $-n $ / $ + 2 $ /,其垂直剖面C $ -n $ / $ + 2 $ /(h)和大气中湍流$ EL $ -o $ /的内部尺度。提出了该方法的理论,并获得了利用气溶胶散射的激光束观察大气中反向散射放大效应的条件。估计信噪比和测量量对内部湍流$ EL $ -o $ /变化的敏感性。讨论了在佐治亚理工学院开发的带有护眼激光雷达的大气边界层中该技术的计划演示。 !24

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