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Water vapour distribution at urban scale using high-resolution numerical weather model and spaceborne SAR interferometric data

机译:使用高分辨率数值天气模型和星载SAR干涉数据的城市规模水汽分布

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The local distribution of water vapour in the urban area of Rome has been studied using both a high resolution mesoscale model (MM5) and Earth Remote Sensing-1 (ERS-1) satellite radar data. Interferometric Synthetic Aperture Radar (InSAR) techniques, after the removal of all other geometric effects, estimate excess path length variation between two different SAR acquisitions (Atmospheric Phase Screen: APS). APS are strictly related to the variations of the water vapour content along the radar line of sight. To the aim of assessing the MM5 ability to reproduce the gross features of the Integrated Water Vapour (IWV) spatial distribution, as a first step ECMWF IWV has been used as benchmark against which the high resolution MM5 model and InSAR APS maps have been compared. As a following step, the high resolution IWV MM5 maps have been compared with both InSAR and surface meteorological data. The results show that the high resolution IWV model maps compare well with the InSAR ones. Support to this finding is obtained by semivariogram analysis that clearly shows good agreement beside from a model bias.
机译:使用高分辨率中尺度模型(MM5)和地球遥感1(ERS-1)卫星雷达数据研究了罗马市区的水蒸气局部分布。去除所有其他几何效应之后,干涉式合成孔径雷达(InSAR)技术可估算两个不同SAR采集之间的多余路径长度变化(大气相位屏蔽:APS)。 APS与雷达视线中水汽含量的变化严格相关。为了评估MM5再现综合水蒸气(IWV)空间分布的总体特征的能力,第一步,将ECMWF IWV用作基准,比较了高分辨率MM5模型和InSAR APS地图。接下来,将高分辨率IWV MM5地图与InSAR和地面气象数据进行了比较。结果表明,高分辨率的IWV模型图与InSAR相比具有很好的对比性。通过半变异函数分析获得了对这一发现的支持,除了模型偏差之外,半变异函数分析还清楚地显示了良好的一致性。

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