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Coastal Eddies in the Ocean Wind Field as Observed by Single and Multifrequency HF Radars on Monterey Bay, California

机译:由加利福尼亚蒙特雷湾的单频和多频高频雷达观测到的海洋风场中的沿海涡流

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Coastal wind eddies at the 10-40 km scale have been studied over Monterey Bay, California by Archer, Ludwig et al. using shore and buoy anemometers and satellite images. Most frequent in the evening and early morning hours, these, typically cyclonic, eddies are often responsible for fog in the Santa Cruz area. We have previously demonstrated the ability of multifrequency HF radar (4.8 to 21.8 MHz) to map the ocean wind field. Observations over a year time span indicate standard errors of prediction of 1.7 m/s for wind speed and 25掳 for direction with biases of 0.1 m/s and 0.3掳 respectively. By combining HF radar wind vector estimates with shore based anemometer data in the WOCSS surface wind field model we are able to form detailed (3 to 5 km resolution) images of eddies over Monterey Bay and to follow their development and decay. We discuss the requirements for making wind field maps with HF radars and demonstrate how the changing array of multiple radar sites can be used to produce HF radar wind field maps. We report observations of 10-20 km cyclonic eddies in the northern and eastern parts of Monterey Bay.
机译:Archer,Ludwig等人已经研究了加利福尼亚州蒙特利湾上10-40 km规模的沿海风涡。使用岸上和浮标风速计和卫星图像。这些通常是气旋的漩涡在傍晚和清晨时分最频繁,通常是造成圣克鲁斯地区大雾的原因。我们之前已经证明了多频HF雷达(4.8至21.8 MHz)绘制海洋风场的能力。在一年的时间跨度内的观测结果表明,风速的标准预测误差为1.7 m / s,风向的标准误差为25掳,其偏差分别为0.1 m / s和0.3掳。通过将WOHF地面风场模型中的HF雷达风矢量估计值与基于海岸的风速计数据相结合,我们能够形成蒙特雷湾上涡流的详细(3至5 km分辨率)图像,并跟踪它们的发展和衰减。我们讨论了使用HF雷达制作风场图的要求,并演示了如何使用变化的多个雷达站点阵列来生成HF雷达风场图。我们报告了在蒙特利湾北部和东部地区10-20 km旋风涡的观测结果。

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