首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Decomposing observations of high-frequency radar-derived surface currents by their forcing mechanisms: Locally wind-driven surface currents
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Decomposing observations of high-frequency radar-derived surface currents by their forcing mechanisms: Locally wind-driven surface currents

机译:通过强迫机制分解高频雷达衍生的表面电流的观测值:局部风驱动的表面电流

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摘要

The wind impulse response function and transfer function for high-frequency radar-derived surface currents off southern San Diego are calculated using several local wind observations. The spatial map of the transfer function reflects the influence of the coast on wind-current dynamics. Near the coast (within 20 km from the shoreline), the amplitudes of the transfer function at inertial and diurnal frequencies are reduced due to effects of coastline and bottom bathymetry. Meanwhile, the amplitude of low-frequency currents increases near the coast, which is attributed to the local geostrophic balance between cross-shore pressure gradients against the coast and currents. Locally wind-driven surface currents are estimated from the data-derived response function, and their power spectrum shows a strong diurnal peak superposed on a red spectrum, similar to the spectra of observed winds. Current magnitudes and veering angles to a quasi-steady wind are typically 2- 5% of the wind speed and vary 50°-90° to the right of the wind, respectively. A wind skill map is introduced to present the fractional variance of surface currents explained by local winds as a verification tool for wind data quality and relevance. Moreover, the transfer functions in summer and winter are presented to examine the seasonal variation in ocean surface current response to the wind associated with stratification change.
机译:圣地亚哥南部的高频雷达源地表电流的风脉冲响应函数和传递函数是使用几个局部风观测值计算得出的。传递函数的空间图反映了海岸对风流动力学的影响。在海岸附近(距海岸线20公里以内),由于海岸线和海底测深法的影响,惯性和昼夜频率处传递函数的幅度减小了。同时,低频电流的振幅在海岸附近增加,这归因于相对于海岸的跨岸压力梯度与电流之间的局部地转平衡。从数据得出的响应函数可以估算出局部风驱动的地表电流,其功率谱显示出一个强大的昼夜峰,叠加在红色光谱上,类似于观测到的风的光谱。准稳定风的当前大小和转向角通常为风速的2-5%,并在风的右侧分别变化50°-90°。引入了风技能图以显示由局部风解释的表面电流的分数方差,作为风数据质量和相关性的验证工具。此外,提出了夏季和冬季的传递函数,以检验海面电流对与分层变化相关的风的响应的季节性变化。

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