来自单个甚高频韦伦雷达(WERA)站的二维内架电流观测

G. Voulgaris, Nirnimesh Kumar, K. Gurgel, J. Warner, J. List
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引用次数: 6

摘要

世界上使用的大多数高频(HF)雷达工作在中高频(8至30 MHz),提供3至1.5公里的空间分辨率和150至50公里的范围。本文介绍了在美国北卡罗来纳州哈特拉斯角近岸部署的单台甚高频(VHF, 48 MHz)韦伦雷达(WERA)雷达的结果,该雷达的空间分辨率为150米,范围为10-15公里。它由12个以波束形成模式工作的天线组成的线性阵列组成。根据雷达后向散射估计了各种风和近岸波条件下的径向速度。提出了一种类似于将声源光束速度转换为正交系统的方法,用于从单个站点获得二维电流场。利用一种新的统计技术,在测量速度范围内评估系统的VHF雷达导出的径向速度的准确性。在实验期间,VHF雷达速度显示出3 ~ 7cm /s的偏差,这可以解释为雷达侵彻和原位测量高度的差异。二维电流场与实测结果吻合较好。几何稀释分析很好地解释了偏差和不准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2-D inner-shelf current observations from a single VHF WEllen RAdar (WERA) station
The majority of High Frequency (HF) radars used worldwide operate at medium to high frequencies (8 to 30 MHz) providing spatial resolutions ranging from 3 to 1.5 km and ranges from 150 to 50 km. This paper presents results from the deployment of a single Very High Frequency (VHF, 48 MHz) WEllen RAdar (WERA) radar with spatial resolution of 150 m and range 10–15 km, used in the nearshore off Cape Hatteras, NC, USA. It consisted of a linear array of 12 antennas operating in beam forming mode. Radial velocities were estimated from radar backscatter for a variety of wind and nearshore wave conditions. A methodology similar to that used for converting acoustically derived beam velocities to an orthogonal system is presented for obtaining 2-D current fields from a single station. The accuracy of the VHF radar-derived radial velocities is examined using a new statistical technique that evaluates the system over the range of measured velocities. The VHF radar velocities showed a bias of 3 to 7 cm/s over the experimental period explainable by the differences in radar penetration and in-situ measurement height. The 2-D current field shows good agreement with the in-situ measurements. Deviations and inaccuracies are well explained by the geometric dilution analysis.
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