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Inhomogeneity of optical turbulence over False Bay(South Africa)

机译:虚假湾(南非)光湍流的不均匀性

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Atmospheric turbulence impacts on the propagation of electro-optical radiation. Typical manifestations of optical turbulence are scintillation(intensity fluctuations), beam wander and(for laser systems)reduction of beam quality. For longer propagation channels, it is important to characterize the vertical and horizontal distribution(inhomogeneity)of the optical turbulence. In the framework of the First European South African Transmission ExpeRiment(FESTER)optical turbulence was measured between June 2015 and February 2016 on a 2 km over-water link over False Bay. The link ran from the Institute of Maritime Technology(IMT)in Simons Town to the lighthouse at Roman Rock Island. Three Boundary layer scintillometers(BLS900)allowed assessing the vertical distribution of optical turbulence at three different heights between 5 and 12 m above the water surface. The expected decrease of C_n~2 with height is not always found. These results are analyzed in terms of the meteorological scenarios, and a comparison is made with a fourth optical link providing optical turbulence data over a 8.7 km path from IMT to Kalk Bay, roughly 36° to the north of the three 2 km paths. The results are related to the inhomogeneous meteorological conditions over the Bay as assessed with the numerical weather prediction tool, the Weather Forecast and Research model WRF.
机译:大气湍流对电光辐射传播的影响。光学湍流的典型表现是闪烁(强度波动),光束漂移和(激光系统)的光束质量的降低。对于更长的传播通道,重要的是表征光学湍流的垂直和水平分布(不均匀性)。在第一个欧洲南非传播实验(疲软)的框架中,在2015年6月至2016年2月之间测量了光学湍流,在假湾的2公里的水上环节上进行了2公里。来自海洋技术研究所(IMT)的链接在西蒙斯镇到罗马岩岛的灯塔。三个边界层闪烁仪(BLS900)允许评估在水面上方5到12米的三个不同高度的光湍流的垂直分布。并不总是找到高度的C_N〜2的预期降低。这些结果是根据气象场景分析的,并且使用第四光链路进行比较,从IMT到Kalk Bay的8.7公里路径提供光学湍流数据,大约是三个2公里路径的北部大约36°。结果与与数值天气预报工具的评估,天气预报和研究模型WRF评估了与海湾上的非均匀气象条件有关。

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