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Modeling the Spatial and Temporal Distribution of Soil Moisture at Watershed Scales Using Remote Sensing and CIS

机译:使用遥感和CIS模拟流域鳞片土壤水分的空间和时间分布

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Soil water content (2_v) is of fundamental importance in meteorology, agriculture, and hydrology, among other scientific disciplines. In hydrology, 2_v partitions rainfall into runoff and infiltration, thus impacting surface and groundwater recharge, flood forecasting, and flow routing modeling. Measurement of 2_v at a point is straightforward, but point measurements are inadequate for watershed hydrology due to variability of soil properties, land cover, and meteorological inputs over space. Passive microwave remote sensing systems have been successfully used to provide regional estimates of surface 2_v (0-5 cm surface layer) at the spatial resolution of the sensor. To extend these data to other depths and scales, a two-layer soil water budget model was used to combine remotely sensed estimates of 2_v and spatial information on land cover, soil type and meteorological inputs to predict root zone 2_v over a 611 km~2 watershed. A GIS was used to pre-process and geo-register spatial data sets for input into the soil water budget model, and analyze the results.
机译:土壤水分含量(2_v)是在气象,农业和水文根本的重要性,其他科学学科之一。在水文,2_v分区降雨到径流和渗透,从而影响表面和地下水补给,洪水预报,和流路由建模。在点2_v的测量是简单的,但是点测量由于土壤性质的变异性,土地覆盖,并用空间气象输入是不够的流域水文。无源微波遥感系统已经被成功地用于在传感器的空间分辨率提供表面2_v(0-5厘米表面层)的区域的估计。扩展这些数据到其它深度和秤,两层土壤水预算模型被用来2_v和土地覆盖,土壤类型和气象输入空间信息的遥感估计结合在611公里〜2预测根区域2_v分水岭。一个GIS被用于预处理和用于输入到土壤中水预算模型地理空间寄存器的数据集,并分析结果。

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