首页> 外文会议>7th Experimental Chaos Conference; Aug 26-29, 2002; San Diego, California >Lagrangian Structures in Very High-Frequency Radar Data and Optimal Pollution Timing
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Lagrangian Structures in Very High-Frequency Radar Data and Optimal Pollution Timing

机译:高频雷达数据中的拉格朗日结构和最佳污染正时

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Very High-frequency (VHF) radar technology produces detailed surface velocity maps near the surface of coastal waters. The use of measured velocity data in environmental prediction, however, has remained unexplored. In this paper, we uncover a striking flow structure in coastal radar observations along the coast of Florida. This structure governs the spread of organic contaminants or passive drifters released in the area. We compute the Lyapunov exponents of the VHF radar data to determine optimal release windows in which contaminants are adverted efficiently away from the coast and we show that a VHF radar-based pollution release scheme using the hidden flow structure reduces the effect of industrial pollution in the coastal environment.
机译:甚高频(VHF)雷达技术可在沿海水面附近产生详细的表面速度图。然而,仍未探索在环境预测中使用测得的速度数据。在本文中,我们在佛罗里达沿海的海岸雷达观测中发现了惊人的流动结构。这种结构控制着该区域释放的有机污染物或被动式漂移器的扩散。我们计算了VHF雷达数据的Lyapunov指数以确定最佳释放窗口,在该窗口中有效地将污染物从海岸带出,并表明使用隐藏流动结构的基于VHF雷达的污染释放方案减少了工业污染的影响。沿海环境。

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