A multi-scale study of wind fields retrieved using synthetic aperture radars and scatterometers

M.B. Ben Ticha, R. Garello, B. Chapron
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引用次数: 1

Abstract

Different physical phenomena could affect the wind fields retrieved using synthetic aperture radars or scatterometers. The influence of these phenomena varies with the spatial scales considered. In this paper, using multi-scale analysis, we compare wind data obtained via different sources. Scatterometer data is integrated into a blended wind product available at IFREMER. This product is the result of an optimal interpolation, based on the kriging approach, of ECMWF analysis wind fields, radiometers and scatterometers wind measurements. The blended wind fields have a spatial resolution of 0.25deg (~25 km). We use these wind fields in our analysis and compare them with wind fields retrieved using the synthetic aperture radar on-board ENVISAT with a spatial resolution of 1 km. The ability of synthetic aperture radars to retrieve wind measurements near the coast permits to evaluate the influence of some coastal effects, tidal currents for example. The study case considered in this paper is the northern coasts of the French region of Brittany. This study is undertaken under the framework of the MODENA project*.
利用合成孔径雷达和散射计反演风场的多尺度研究
不同的物理现象会影响合成孔径雷达或散射计所获取的风场。这些现象的影响随所考虑的空间尺度而变化。本文采用多尺度分析方法,对不同来源的风数据进行了比较。散射计数据集成到IFREMER提供的混合风产品中。该产品是基于克里格方法的ECMWF分析风场,辐射计和散射计风测量的最佳插值结果。混合风场的空间分辨率为0.25°(~25 km)。我们在分析中使用了这些风场,并将其与机载ENVISAT合成孔径雷达获取的风场进行了比较,该雷达的空间分辨率为1公里。合成孔径雷达能够检索海岸附近的风测量值,从而可以评估某些海岸效应的影响,例如潮汐流。本文考虑的研究案例是法国布列塔尼地区的北部海岸。这项研究是在MODENA项目*的框架下进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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