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Laser Beam Propagation through an Atmospheric Transitional and Turbulent Boundary Layer

机译:激光束通过大气过渡和湍流边界层传播

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This study investigates laser beam propagation through an atmospheric boundary layer near the ocean surface. Objectives of this research are to ascertain feasibility limits for achieving maximum energy efficiency at extended ranges in the face of atmospheric and other distortions as the laser beam penetrates through transitional (anisotropic) and turbulent (isotropic) boundary layer regimes. Various aspects of turbulence modeling of laser beam propagation near the ocean surface are discussed including: Kolmogorov's model of atmospheric turbulence, parameterized structure functions (e.g., velocity and temperature gradients, gradients in refractive index) and other important factors affecting near surface propagation such as humidity, aerosols, and wave slap. Various preliminary modeled propagation results are shown, and a new methodology is proposed for improving existing model estimates with new time domain measurement procedures.
机译:本研究通过海面附近的大气边界层调查激光束传播。本研究的目的是在激光束穿过过渡(各向异性)和湍流(各向同性)边界层制度的情况下,确定在大气和其他扭曲的延伸范围内实现最大能量效率的可行性限制。讨论了海面附近的激光束传播的湍流建模的各个方面,包括:Kolmogorov的大气湍流模型,参数化结构功能(例如,速度和温度梯度,折射率梯度)以及影响近湿度附近表面传播的其他重要因素,气溶胶和波浪扣。示出了各种初步建模的传播结果,提出了一种新的方法,用于改进具有新时域测量程序的现有模型估计。

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