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Sustained observations of mesoscale and sub-mesoscale surface circulation off the U.S. West Coast

机译:持续观察美国西海岸外中尺度和亚中尺度的地表环流

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With collaborated research efforts in the regional coastal ocean observing systems (SCCOOS, CeNCOOS, and NANOOS) off the U.S. West Coast (USWC), the nearly completed high-frequency radar (HFR) network provides an unprecedented capability to monitor and understand coastal ocean dynamics and phenomenology through hourly surface current measurements at up to 1 km resolution. The dynamics of the surface currents off the USWC are governed by tides, winds, Coriolis force, low-frequency pressure gradients (less than 0.4 cycles per day (cpd)), and nonlinear interactions of those forces. The HFR surface currents resolve coastal surface ocean variability continuously across scales from sub-mesoscale to mesoscale (O(1) km to O(1000) km). Their spectra decay with k-2 at high wave number (less than 100 km) in agreement with theoretical sub-mesoscale spectra below the observational limits of present-day satellite altimeters.
机译:通过对美国西海岸(USWC)以外的区域沿海海洋观测系统(SCCOOS,CeNCOOS和NANOOS)的合作研究,几乎完成的高频雷达(HFR)网络提供了前所未有的监视和了解沿海海洋动态的能力通过每小时高达1 km的分辨率的表面电流测量来进行现象学和现象学研究。来自USWC的表面电流的动力学受潮汐,风,科里奥利力,低频压力梯度(每天小于0.4个循环(cpd))以及这些力的非线性相互作用的控制。 HFR地表水流在从亚中尺度到中尺度(O(1)km至O(1000)km)的各个尺度上连续解决了沿海表层海洋的变化。它们的光谱在高波数(小于100 km)下以k-2衰减,这与低于当前卫星高度计观测极限的理论亚中尺度光谱一致。

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