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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Marine X-Band Radar Currents and Bathymetry: An Argument for a Wave Number-Dependent Retrieval Method
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Marine X-Band Radar Currents and Bathymetry: An Argument for a Wave Number-Dependent Retrieval Method

机译:海洋X波段雷达电流和沐浴曲线:波浪数依赖性检索方法的参数

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摘要

This study evaluates shipboard marine X-band radar (MR) near-surface current and bathymetry measurements under shallow water conditions. The retrieval algorithm is based on the surface wave signal within three-dimensional wave number frequency MR backscatter intensity variance spectra. The MR data were collected during a research cruise that investigated submesoscale processes and their impact on oil spill transport in the Louisiana Bight. The MR currents and bathymetry are validated using measurements from 500 GPS-equipped surface drifters, a shipboard acoustic Doppler current profiler, and a shipboard single-beam echo sounder. Earlier results from the same experiment but using a different set of sensors indicate strong upper ocean vertical current shear over a 3.5 hr period, despite only mild wind forcing. Here, the MR currents are derived as a function of wave number, providing a measure of vertical shear for the full duration of the cruise. Strong vertical shear is frequently observed, with a maximum difference of 0.42 m/s between the MR high (effective depth of similar to 0.9 m) and low (similar to 2.4 m) wave number bins. Treating the drifter and echo sounder measurements as truth, the accuracies of the MR near-surface currents and bathymetry are 0.04-0.07 m/s and 1.2 m (or 7% of the mean water depth). However, it is shown that similar to 50% of the MR high wave number and drifter current differences is due to vertical shear. The shallow water MR near-surface current accuracy thus matches findings from a previous deep water validation where vertical shear was much weaker.
机译:本研究评估船舶船舶X带雷达(MR)近表面电流和浴约集测量在浅水条件下。检索算法基于三维波数频率MR后散射强度方差谱的表面波信号。在研究巡航期间收集MR数据,该研究巡航调查了饲料过程及其对路易斯安那州的石油泄漏运输的影响。使用500 GPS装备的表面漂移器,船舶声学多普勒电流分析仪和船上单光束回声发声器进行验证MR电流和碱度验证。早期的结果来自同一实验,但使用不同的传感器表示强大的上海垂直电流剪切在3.5小时内,尽管只有温和的风强迫。这里,MR电流作为波数的函数导出,为巡航的全持续时间提供垂直剪切的量度。经常观察到强的垂直剪切,在MR高(有效深度为0.9μm)之间的最大差异为0.42m / s,低(类似于2.4米)波数箱。将漂移和回声发声器测量视为真理,MR近表面电流和沐浴醇的精度为0.04-0.07m / s和1.2米(或平均水深的7%)。然而,示出类似于MR高波数的50%和漂移电流差异是由于垂直剪切。浅水MR近表面电流精度因此与先前的深水验证相匹配,其中垂直剪切较弱。

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    Univ Miami Rosenstiel Sch Marine &

    Atmospher Sci 4600 Rickenbacker Causeway Miami FL 33149 USA;

    Univ Miami Rosenstiel Sch Marine &

    Atmospher Sci 4600 Rickenbacker Causeway Miami FL 33149 USA;

    Univ Miami Rosenstiel Sch Marine &

    Atmospher Sci 4600 Rickenbacker Causeway Miami FL 33149 USA;

    Helmholtz Zentrum Geesthacht Geesthacht Germany;

    Helmholtz Zentrum Geesthacht Geesthacht Germany;

    Univ Miami Rosenstiel Sch Marine &

    Atmospher Sci 4600 Rickenbacker Causeway Miami FL 33149 USA;

    Univ Miami Rosenstiel Sch Marine &

    Atmospher Sci 4600 Rickenbacker Causeway Miami FL 33149 USA;

    Univ Miami Rosenstiel Sch Marine &

    Atmospher Sci 4600 Rickenbacker Causeway Miami FL 33149 USA;

    Columbia Univ Lamont Doherty Earth Observ Palisades NY USA;

    Univ Miami Rosenstiel Sch Marine &

    Atmospher Sci 4600 Rickenbacker Causeway Miami FL 33149 USA;

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  • 正文语种 eng
  • 中图分类 地球物理学;
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