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Operational Soil Moisture from ASCAT in Support of Water Resources Management

机译:来自ASCAT的可操作土壤水分以支持水资源管理

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This study provides the results of an extensive investigation of the Advanced Scaterometter (ASCAT) surface soil moisture global operational product accuracy across three continents (United States of America (USA), Europe, and Australia). ASCAT predictions of surface soil moisture were compared against near concurrent in situ measurements from the FLUXNET observational network. A total of nine experimental sites were used to assess the accuracy of ASCAT Surface Soil Moisture (ASCAT SSM) predictions for two complete years of observations (2010, 2011). Results showed a generally reasonable agreement between the ASCAT product and the in situ soil moisture measurements in the 0–5 cm soil moisture layer. The Root Mean Square Error (RMSE) was below 0.135 m 3 m ?3 at all of the sites. With a few exceptions, Pearson’s correlation coefficient was above 45%. Grassland, shrublands, and woody savanna land cover types exhibited satisfactory agreement in all the sites analyzed (RMSE ranging from 0.05 to 0.13 m 3 m ?3 ). Seasonal performance was tested, but no definite conclusion can be made with statistical significance at this time, as the seasonal results varied from continent to continent and from year to year. However, the satellite and in situ measurements for Needleleaf forests were practically uncorrelated (R = ?0.11 and ?0.04). ASCAT predictions overestimated the observed values at all of the sites in Australia. A positive bias of approximately 0.05 m 3 m ?3 was found with respect to the observed values that were in the range 0–0.3 m 3 m ?3 . Better agreement was observed for the grassland sites in most cases (RMSE ranging from 0.09 to 0.10 m 3 m ?3 and R from 0.46 to 0.90). Our results provide supportive evidence regarding the potential value of the ASCAT global operational product for meso-scale studies and the relevant practical applications. A key contribution of this study is a comprehensive evaluation of ASCAT product soil moisture estimates at different sites around the globe. These sites represent a variety of climatic, environmental, biome, and topographical conditions.
机译:这项研究提供了对三大洲(美利坚合众国(美国),欧洲和澳大利亚)的高级分类器(ASCAT)地表土壤水分全球操作产品准确性的广泛调查的结果。将ASCAT预测的地表土壤水分与FLUXNET观测网络的近时原位测量结果进行了比较。总共有9个实验地点用于评估ASCAT表层土壤水分(ASCAT SSM)预测在整整两年的观测中的准确性(2010,2011)。结果表明ASCAT产品与0-5 cm土壤水分层中的原位土壤水分测量值之间具有基本合理的一致性。在所有地点,均方根误差(RMSE)均低于0.135 m 3 m?3。除少数例外,Pearson的相关系数高于45%。草地,灌木丛和木质稀树草原土地覆盖类型在所有分析地点均表现出令人满意的一致性(RMSE范围为0.05至0.13 m 3 m?3)。对季节性表现进行了测试,但由于季节性结果因大陆和年份而异,因此目前尚不能得出具有统计意义的明确结论。但是,针叶林的卫星和原位测量实际上是不相关的(R = 0.11和0.04)。 ASCAT的预测高估了澳大利亚所有站点的观测值。相对于0–0.3 m 3 m?3范围内的观测值,发现约0.05 m 3 m?3的正偏差。在大多数情况下,草地场的一致性更好(RMSE范围为0.09至0.10 m 3 m?3,R为0.46至0.90)。我们的结果提供了有关ASCAT全球运行产品对中规模研究和相关实际应用的潜在价值的支持性证据。这项研究的主要贡献是对全球不同地点的ASCAT产品土壤湿度估算值进行了全面评估。这些地点代表了各种气候,环境,生物群落和地形条件。

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