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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Surface circulation at the Strait of Gibraltar: A combined HF radar and high resolution model study
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Surface circulation at the Strait of Gibraltar: A combined HF radar and high resolution model study

机译:直布罗陀海峡的地表环流:高频雷达与高分辨率模型的组合研究

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Observations from a high frequency radar system and outputs from a high resolution operational ocean model working at the Strait of Gibraltar have been analyzed and compared during the period February 2013 to September 2014 in order to evaluate their capability to resolve the surface circulation of the region. The description of the mean circulation patterns has been statistically assessed, showing good agreement, particularly in the central region of the strait corresponding with the Atlantic Jet (AJ) stream, although some short scale features are not reproduced by the model. In the frequency domain very high concordance is observed. Tidal maps of diurnal and semidiurnal constituents are in good agreement with previous observations. The analysis of the model and radar response to the wind forcing reveals that the low resolution of the model wind-forcing field and its deeper superficial level smoothes the wind effect on the simulated currents. The first three EOF modes account for the 86% of model and radar variances. The coincidence between the observed and simulated patterns is very significant for the first two modes, which account for the mean velocity field and the latitudinal shifting of the AJ consequence of the flowtopography interaction. The third mode captures the wind-induced circulation, and greater discrepancies are found in this case. Results underline the complementary character of both systems: radar observations improve the model description, resolving short scale processes, while the model completes the radar information when the time or spatial coverage is poorer.
机译:在2013年2月至2014年9月期间,对高频雷达系统的观测结果和在直布罗陀海峡工作的高分辨率可操作海洋模型的输出结果进行了分析和比较,以评估其解决该地区地表环流的能力。对平均环流模式的描述已进行了统计评估,显示出良好的一致性,特别是在与大西洋急流(AJ)相对应的海峡中部地区,尽管该模型未再现某些短尺度特征。在频域中,观察到非常高的一致性。日和半日成分的潮汐图与以前的观察结果非常吻合。对模型和雷达对风力的响应的分析表明,模型风力场的低分辨率及其更深的表层水平使风对模拟电流的影响变得平滑。前三种EOF模式占模型和雷达方差的86%。对于前两种模式,观察到的模式与模拟模式之间的一致性非常重要,这说明了平均速度场和流形相互作用的AJ结果的纬度偏移。第三种模式捕获了风引起的环流,在这种情况下发现了更大的差异。结果强调了两个系统的互补性:雷达观测改善了模型描述,解决了小规模过程,而当时间或空间覆盖范围较差时,模型则完成了雷达信息。

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