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Validation of HF radar sea surface currents in the Malta-Sicily Channel

机译:马耳他 - 西西里岛探测HF雷达海面电流

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A network of High-Frequency radar (HFR) stations runs operationally in the Malta-Sicily Channel (MSC), Central Mediterranean Sea, providing sea surface current maps with high temporal (1 h) and spatial (3 x 3 km) resolutions since August 2012. Comparisons with surface drifter data and near-surface Acoustic Doppler Current Profiler (ADCP) observations, as well as radar site-to-site baseline analyses, provide quantitative assessments of HFR velocities accuracy. Twenty-two drifters were deployed within the HFR domain of coverage between December 2012 and October 2013. Additionally, six ADCP vertical current profiles were collected at selected positions during a dedicated field survey. External radio-frequency interferences lead to significant gaps in the HFR coverage, which were minimized by an interpolation technique applied to the surface current fields. The validation of HFR velocities was first performed for each individual station in the network, using data generated with both the ideal and the measured antenna patterns. The validation was then repeated with pairs of HFR stations using the site-to-site baseline error analysis. The analysis confirms that the baseline error estimations and the full validation metrics for this HFR frequency band are consistent, and in some aspects superior, when compared to results from similar studies in other regions. The validation with drifter tracks suggests that the adopted interpolation procedure does not in general impact on the comparison metrics, but may introduce biases when used to extrapolate currents in regions where radar geometrical constraints are suboptimal. The analysis of the percentage of contribution of individual HFR stations shown that the quality of HFR data is influenced by the network geometry.
机译:高频雷达(HFR)站的网络在Malta-Sicily频道(MSC),中央地中海,中央地中海,自8月以来,提供高时(1小时)和空间(3×3公里)的海面电流图2012年。与表面漂移数据和近表面声学多普勒电流分析器(ADCP)观测的比较以及雷达部位到现场基线分析提供了HFR速度精度的定量评估。在2012年12月和2013年10月之间的HFR覆盖范围内部署了二十二个漂移者。另外,在专用现场调查期间在选定的位置收集六个ADCP垂直电流曲线。外部射频干扰导致HFR覆盖范围内的显着间隙,其通过施加到表面电流场的插值技术最小化。首先为网络中的每个单独站执行HFR速度的验证,使用具有理想和测量的天线图案的数据产生的数据。然后使用站点到网站基线误差分析用一对HFR站重复验证。分析证实,与其他地区类似研究的结果相比,该HFR频带的基线误差估计和全部验证度量是一致的,并且在某些方面是优越的。与漂移轨道的验证表明,采用的插值过程对比较度量的一般影响不影响,但是当用于推断雷达几何约束的区域中的电流时可能引入偏见。分析单个HFR站的贡献百分比,表明HFR数据的质量受网络几何影响。

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