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Implementation of a global-scale operational data assimilation system for satellite-based soil moisture retrievals

机译:卫星土壤水分检索全球规模运营数据同化系统的实施

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Timely and accurate monitoring of global weather anomalies and drought conditions is essential for assessing global crop conditions. Soil moisture observations are particularly important for crop yield fluctuations provided by the US Department of Agriculture (USDA) Production Estimation and Crop Assessment Division (PECAD). The current system utilized by PECAD estimates soil moisture from a 2-layer water balance model based on precipitation and temperature data from World Meteorological Organization (WMO) and US Air Force Weather Agency (AFWA). The accuracy of this system is highly dependent on the data sources used; particularly the accuracy, consistency, and spatial and temporal coverage of the land and climatic data input into the models. However, many regions of the globe lack observations at the temporal and spatial resolutions required by PECAD. This study incorporates NASA's soil moisture remote sensing product provided by the EOS Advanced Microwave Scanning Radiometer (AMSR-E) into the U.S. Department of Agriculture Crop Assessment and Data Retrieval (CADRE) decision support system. A quasi-global-scale operational data assimilation system has been designed and implemented to provide CADRE a daily product of integrated AMSR-E soil moisture observations with the PECAD two-layer soil moisture model forecasts. A methodology of the system design and a brief evaluation of the system performance over the Conterminous United States (CONUS) is presented.
机译:及时,准确地监测全球天气异常和干旱条件对于评估全球作物条件至关重要。土壤水分观察对于美国农业部(美国农业部)生产估计和作物评估司(PECAD)提供的作物产量波动尤为重要。 Pecad利用的目前系统基于来自世界气象组织(WMO)和美国空军天气局(AWWA)的降水和温度数据,从两层水平衡模型中估计土壤水分。该系统的准确性高度依赖于所用的数据源;特别是造型中的土地和气候数据的准确性,一致性和空间和时间覆盖。然而,全球许多地区缺乏Pecad所要求的时间和空间决议的观察。这项研究采用了由EOS先进微波扫描辐射计(AMSR-E)提供的美国航空航天局的土壤水分遥感产品进入农业作物评估和数据检索(干部)决策支持系统的美国能源部。已经设计和实施了准全球范围的运营数据同化系统,以提供CADRE A AMSR-E土壤水分观察的日常产品,与PECAD双层土壤水分模型预测。介绍了系统设计的方法,简要评估了对孔雀体美国(康明斯)的系统性能。

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