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The case for building a current-mapping over-the-horizon radar

机译:建立电流映射过 - 地平线雷达的情况

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Results of recent NOAA tests with the U.S. Air Force and U.S. Navy over-the-horizon (0TH) radars show that it is possible to map near-surface currents with 10-15-km resolution to ranges greater than 2,500 km. The technique is similar to that usedby commercially available high-frequency current-mapping radars, except that range is greatly extended by bouncing the radar beam off the ionosphere. Current maps made with U.S. Navy 0TH radars often show new detail never before seen, for example, thecomplex space-time structure of the Florida Current, as well as large currents driven ahead of an Atlantic hurricane. However, the military taskloads of these radars preclude their operational use for continuous, large-area ocean monitoring. For thatpurpose, a dedicated low-cost radar system would be required. A possible installation would cover the Gulf of Mexico, the Caribbean Sea, and the hurricane approaches to the U.S. East Coast and Gulf Coast. We examine the costs, benefits, problems, andpotential customers of such a radar.
机译:近期NOAA与美国空军和美国海军的测试结果表明,可以将10-15公里的分辨率映射到大于2,500公里的范围内映射近表面电流。该技术类似于可商购的高频电流映射雷达的技术,除了通过从电离层中弹出雷达梁而大大延伸。使用美国海军第0雷达制造的当前地图通常显示在佛罗里达州电流的Checomplex时空结构之前从未见过的新细节,以及在大西洋飓风之前推动的大型电流。然而,这些雷达的军事任务负荷阻止了他们的运行用途,以进行连续,大面积的海洋监测。对于特征,将需要一个专用的低成本雷达系统。可能的安装将覆盖墨西哥湾,加勒比海和美国东海岸和湾海岸的飓风方法。我们检查这种雷达的成本,福利,问题,和平客户。

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