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Atmospheric optical turbulence over land in middle east coastal environments: prediction modeling and measurements

机译:中东沿海环境中陆地上的大气光学湍流:预测模型和测量

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摘要

Beam intensity scintillations, characterized by a refractive-index structure parameter and caused by variations of macrometeorological features of the coastal atmosphere such as air temperature, wind speed and direction, and relative humidity, are examined theoretically and experimentally. In our theoretical analysis we present two well-known models considered separately for over-water and over-land atmospheric optical communication or imaging channels. By means of comparison with our experiments carried out in midland coastal environments in southern and northern Israel, we show the limitations of the models to predict the refractive-index structure C_(n)~(2) parameter for both daytime and nighttime turbulent atmospheres in different coastal zone meteorological conditions. We also present an extension of an existing model with two different practical applications that, as is shown experimentally, can be a good predictor of C_(n)~(2) for optical atmospheric paths over midland coastal zones.
机译:从理论上和实验上对光束强度闪烁进行了研究,该光束强度闪烁的特征是折射率结构参数,并且是由沿海大气的宏观气象特征(例如气温,风速和方向以及相对湿度)的变化引起的。在理论分析中,我们提出了两个分别针对水上和陆地大气光通信或成像通道考虑的著名模型。通过与我们在以色列南部和北部中部沿海环境中进行的实验进行比较,我们证明了模型在预测白天和夜间湍流大气中折射率结构C_(n)〜(2)参数方面的局限性。不同沿海地区的气象条件。我们还提出了具有两个不同实际应用的现有模型的扩展,如实验所示,该模型可以很好地预测中部沿海地区光学大气路径的C_(n)〜(2)。

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