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Impact of Direct Soil Moisture and Revised Soil Moisture Index Methods on Hydrologic Predictions in an Arid Climate

机译:干旱气候下直接土壤水分和修正的土壤水分指数方法对水文预报的影响

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The soil and water assessment tool (SWAT) is a physically based model that is used extensively to simulate hydrologic processes in a wide range of climates around the world. SWAT uses spatial hydrometeorological data to simulate runoff through the computation of a retention curve number. The objective of the present study was to compare the performance of two approaches used for the calculation of curve numbers in SWAT, that is, the Revised Soil Moisture Index (SMI), which is based on previous meteorological conditions, and the Soil Moisture Condition II (SMCII), which is based on soil features for the prediction of flow. The results showed that the sensitive parameters for the SMI method are land-use and land-cover features. However, for the SMCII method, the soil and the channel are the sensitive parameters. The performances of the SMI and SMCII methods were analyzed using various indices. We concluded that the fair performance of the SMI method in an arid region may be due to the inherent characteristics of the method since it relies mostly on previous meteorological conditions and does not account for the soil features of the catchment.
机译:土壤和水评估工具(SWAT)是基于物理的模型,已广泛用于模拟世界范围内各种气候下的水文过程。 SWAT使用空间水文气象数据通过计算保留曲线数来模拟径流。本研究的目的是比较两种在SWAT中用于计算曲线数的方法的性能,即基于以前的气​​象条件和土壤湿度条件II的修正土壤湿度指数(SMI)。 (SMCII),它基于土壤特征来预测流量。结果表明,SMI方法的敏感参数是土地利用和土地覆盖特征。但是,对于SMCII方法,土壤和通道是敏感参数。使用各种指标分析了SMI和SMCII方法的性能。我们得出的结论是,SMI方法在干旱地区的合理表现可能是由于该方法的固有特性,因为它主要依赖于以前的气​​象条件,并且没有考虑集水区的土壤特征。

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