Measurement and analysis of atmospheric optical turbulence in a near-maritime environment

Christopher Jellen, C. Nelson, C. Brownell, J. Burkhardt, Miles Oakley
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引用次数: 10

Abstract

The index of refraction structure constant, Cn2, characterizing the intensity of optical turbulence, describes the disruption of a propagating electromagnetic beam passing through an inhomogeneously heated turbulent environment. In order to improve predictive models, it is critical to develop a deeper understanding of the relationships between environmental parameters and optical turbulence. To that end, an overwater, 890 m scintillometer link was established along the Chesapeake Bay adjacent to the Severn River in Annapolis, Maryland. Specifically, Cn2 data from the scintillometer, as well, as numerous meteorological parameters were collected over the period of approximately 15 months to characterize a scintillometer link in the near-maritime environment. The characteristics of this near-maritime link were distinct from those observed in prior over-land and open ocean links. Further, existing macro-meteorological models for predicting Cn2 from environmental parameters developed for open-ocean links were shown to perform poorly in the near-maritime environment. While the offshore adapted macro-meteorological model demonstrated lower prediction error, this study suggests that new models could be developed to reduce Cn2 prediction error in the near-maritime environment. The complete data set, including Cn2 measurements, and to our knowledge, one of the first to extend beyond one year, is available.
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近海环境下大气光学湍流的测量与分析
表征光学湍流强度的折射率结构常数Cn2描述了穿过不均匀加热湍流环境的传播电磁束的破坏。为了改进预测模型,深入了解环境参数和光学湍流之间的关系至关重要。为此,在马里兰州安纳波利斯靠近塞文河的切萨皮克湾建立了一条890米的水上闪烁仪连接线。具体而言,在大约15个月的时间里,收集了闪烁仪的Cn2数据以及许多气象参数,以表征近海洋环境中闪烁仪的连接。这种近海连接的特征与以前在陆地和公海连接中观察到的特征不同。此外,根据为公海连接开发的环境参数预测Cn2的现有宏观气象模型在近海环境中表现不佳。虽然适应近海的宏观气象模型显示出较低的预测误差,但本研究表明,可以开发新的模型来降低近海环境中的Cn2预测误差。完整的数据集,包括Cn2测量,据我们所知,是第一批超过一年的数据集之一。
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