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Synoptic, mesoscale, and microscale influences on near surface radio frequency clear air propagation in the coastal atmosphere

机译:SYNOPTIC,MESCHEL和微观尺寸对近地大气近视射频清晰空气传播的影响

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Near surface clear air radio frequency (RF) propagation in the coastal area is the result of air/sea/land interactions influenced primarily by the characteristics of the surface of the land and sea. Synoptic influences by large scale (approximately 300 km) meteorological features, such as cold fronts and high-pressure ridges, control wind direction and sources of water vapor. Mesoscale meteorological influences (approximately 50 km), such as sea breeze and convective precipitation, may rapidly change the propagation environment. Microscale meteorological structures (approximately 1 km), such as the atmospheric boundary layer, react to the larger synoptic and mesoscale features to create spatiotemporal refractivity fields. The paper presents the results of a three-year research effort that identifies the larger scale meteorological processes that impose non-standard propagation structures in the coastal marine atmospheric boundary layer. Highly resolved propagation and thermodynamic data from Wallops Island, Virginia, the California coast, and the Persian Gulf are combined with archived meteorological data in order to relate anomalous clear air propagation to universal weather map features.
机译:沿海地区的近地表透明空气射频(RF)在沿海地区的传播是航空/海洋/土地互动的结果,主要受陆地和海洋表面特点的影响。大规模(约300公里)气象特征的概要影响,如冷锋和高压脊,控制风向和水蒸气源。 Mescle气象影响(约50公里),如海风和对流降水,可能会迅速改变传播环境。微尺度气象结构(大约1公里),如大气边界层,反应以较大的天气和中尺度特征来创建时空折射率字段。本文提出了为期三年的研究工作的结果,识别沿海地海洋大气边界层施加非标准传播结构的较大规模的气象过程。来自Wallops岛,弗吉尼亚州,加州海岸的高度解决的传播和热力学数据以及波斯湾与存档的气象数据相结合,以使异常清晰的空气传播与通用天气图特征联系起来。

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