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Performance Evaluation of Four-Parameter Models of the Soil-Water Characteristic Curve

机译:土壤 - 水特征曲线四参数模型的性能评价

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Soil-water characteristic curves (SWCCs) are important in terms of groundwater recharge, agriculture, and soil chemistry. These relationships are also of considerable value in geotechnical and geoenvironmental engineering. Their measurement, however, is difficult, expensive, and time-consuming. Many empirical models have been developed to describe the SWCC. Statistical assessment of soil-water characteristic curve models found that exponential-based model equations were the most difficult to fit and generally provided the poorest fit to the soil-water characteristic data. In this paper, an exponential-based model is devised to describe the SWCC. The modified equation is similar to those previously reported by Gardner (1956) but includes exponential variable. Verification was performed with 24 independent data sets for a wide range of soil textures. Prediction results were compared with the most widely used models to assess the model’s performance. It was proven that the exponential-based equation of the modified model provided greater flexibility and a better fit to data on various types of soil.
机译:土壤 - 水特征曲线(SWCCS)在地下水充电,农业和土壤化学方面都很重要。这些关系在岩土和地理环境工程中也具有相当大的价值。然而,它们的测量难以困难,昂贵,耗时。已经开发出许多经验模型来描述SWCC。土壤 - 水特征曲线模型的统计评估发现,基于指数的模型方程是最难以适应的,并且通常为土壤 - 水特征数据提供最贫困的拟合。在本文中,设计了一种基于指数的模型来描述SWCC。修改的等式类似于先前由Gardner(1956)报告的等式,而是包括指数变量。使用24个独立数据集进行验证,可用于各种土壤纹理。将预测结果与最广泛使用的模型进行了比较,以评估模型的性能。据证明,改进模型的基于指数的等式提供了更大的灵活性,更好地适应各种类型的土壤。

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