首页> 外文会议>Education Technology and Training, 2008. and 2008 International Workshop on Geoscience and Remote Sensing. ETT and GRS 2008 >Distributed Hydrological Model with New Soil Water Parameterization for Integrating Remotely Sensed Soil Moisture at Watershed Scale
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Distributed Hydrological Model with New Soil Water Parameterization for Integrating Remotely Sensed Soil Moisture at Watershed Scale

机译:集水区尺度遥感土壤水分与新型土壤水分参数化分布式水文模型

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Detailed vertical soil moisture profile is essential for hydrological modeling and is also often used as important diagnostic information for better understanding the surface-atmospheric interactions. This paper presents a modified ESSI distributed hydrological model that is suitable for comparing and assimilating the remotely sensed soil moisture by integrating a soil water parameterization scheme which is able to numerically calculates soil water transportations between different soil layers based on the 1D Richards equation. The newly modified ESSI hydrological model was applied to the Jinghe river basin situated in the upper stream of the Huanghe River Basin, China. The preliminary simulation experiments indicate that model performs well to reasonably predict the vertical soil water moisture profile and achieve better modeling efficiency in stream-flow prediction. The modified ESSI should be an ideal candidate as a model operator of the four dimensional data assimilation system for assimilating remotely sensed soil moisture at watershed scale.
机译:详细的垂直土壤水分剖面对于水文建模至关重要,也经常被用作重要的诊断信息,以更好地了解地表与大气之间的相互作用。本文提出了一种改进的ESSI分布式水文模型,该模型适用于通过结合土壤水参数化方案来比较和吸收遥感土壤水分的方法,该方案能够基于一维理查兹方程数值计算不同土壤层之间的土壤水分传输。新修改的ESSI水文模型被应用于位于中国黄河上游的the河流域。初步的模拟实验表明,该模型能够较好地合理预测土壤垂直水分剖面,并在水流预测中达到较好的建模效率。修改后的ESSI应该是用于在流域尺度上吸收遥感土壤水分的四维数据吸收系统的模型运算符的理想人选。

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