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Spatial and temporal variability of biophysical variables in southwestern France from airborne L-band radiometry

机译:机载L波段辐射测量法在法国西南部生物物理变量的时空变化

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In 2009 and 2010 the L-band microwave Cooperative Airborne Radiometer for Ocean and Land Studies (CAROLS) campaign was performed in southwestern France to support the calibration and validation of the new Soil Moisture and Ocean Salinity (SMOS) satellite mission. The L-band Microwave Emission of the Biosphere (L-MEB) model was used to retrieve surface soil moisture (SSM) and the vegetation optical depth (VOD) from the CAROLS brightness temperature measurements. The CAROLS SSM was compared with in situ observations at 11 sites of the SMOSMANIA (Soil Moisture Observing System-Meteorological Automatic Network Integrated Application) network of Mto-France. For eight of them, significant correlations were observed (0.51 ?‰Currency sign r ?‰Currency sign 0.82), with standard deviation of differences ranging from 0.039 m3 m??'3 to 0.141 m3 m??'3. Also, the CAROLS SSM was compared with SSM values simulated by the A-gs version of the Interactions between Soil, Biosphere and Atmosphere (ISBA-A-gs) model along 20 flight lines, at a resolution of 8 km 8 km. A significant spatial correlation between these two datasets was observed for all the flights (0.36 ?‰Currency sign r ?‰Currency sign 0.85). The CAROLS VOD presented significant spatial correlations with the vegetation water content (VWC) derived from the spatial distribution of vegetation types used in ISBA-A-gs and from the Leaf Area Index (LAI) simulated for low vegetation. On the other hand, the CAROLS VOD presented little temporal changes, and no temporal correlation was observed with the simulated LAI. For low vegetation, the ratio of VOD to VWC tended to decrease, from springtime to summertime. The ISBA-A-gs grid cells (8 km 8 km) were sampled every 5 m by CAROLS observations, at a spatial resolution of about 2 km. For 83% of the grid cells, the standard deviation of the sub-grid CAROLS SSM was lower than 0.05 m3 m??'3. The presence of small water bodies within the ISBA-A-gs grid cells tended to increase the CAROLS SSM spatial variability, up to 0.10 m3 m??'3. Also, the grid cells characterised by a high vegetation cover heterogeneity presented higher standard deviation values, for both SSM and VOD.
机译:2009年和2010年,法国西南部开展了L波段微波海洋和陆地合作用机载辐射计(CAROLS)运动,以支持对新的土壤湿度和海洋盐度(SMOS)卫星任务的校准和验证。 L波段的生物圈微波发射(L-MEB)模型用于从CAROLS亮度温度测量中检索表层土壤水分(SSM)和植被光学深度(VOD)。将CAROLS SSM与法国Mto的SMOSMANIA(土壤水分观测系统-气象自动网络集成应用程序)网络的11个站点的现场观测结果进行了比较。对于其中的八个,观察到显着的相关性(0.51≥货币符号 r ≥货币符号0.82),标准差的范围为0.039 m3 m ??'3到0.141 m3 m?3。 '3。此外,还将CAROLS SSM与土壤,生物圈与大气之间相互作用的A-gs版本(ISBA-A-gs)模型沿20条飞行线模拟的SSM值进行了比较,分辨率为8 km 8 km。在所有飞行中,这两个数据集之间都存在显着的空间相关性(0.36?货币符号 r ?‰货币符号0.85)。 CAROLS VOD与植被含水量(VWC)呈现出显着的空间相关性,植被含水量由ISBA-A-gs中使用的植被类型的空间分布以及低植被模拟的叶面积指数(LAI)得出。另一方面,CAROLS VOD几乎没有时间变化,并且在模拟的LAI上没有观察到时间相关性。对于低植被,从春季到夏季,VOD与VWC的比率趋于下降。通过CAROLS观测,每5 m对ISBA-A-gs网格单元(8 km 8 km)进行采样,空间分辨率约为2 km。对于83%的网格单元,子网格CAROLS SSM的标准偏差小于0.05 m3 m?3。 ISBA-A-gs网格单元中小水体的存在倾向于增加CAROLS SSM的空间变异性,最高可达0.10 m3 m?3。同样,对于SSM和VOD,以高植被覆盖为特征的网格单元表现出更高的标准偏差值。

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