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Evaluation of pedotransfer functions predicting hydraulic properties of soils and deeper sediments

机译:预测土壤和深层沉积物水力特性的脚步传递函数的评估

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Eight pedotransfer functions (PTF) originally calibrated to soil data are used for evaluation of hydraulic properties of soils and deeper sediments. Only PTFs are considered which had shown good results in previous investigations. Two data sets were used for this purpose: a data set of measured pressure heads vs. water contents of 347 soil horizons (802 measured pairs) from Bavaria (Southern Germany) and a data set of 39 undisturbed samples of tertiary sediments from deeper ground (down to 100 m depth) in the molasse basin north of the Alps, containing 840 measured water contents vs, pressure head and unsaturated hydraulic conductivity. A statistical analysis of the PTFs shows that their performance is quite similar with respect to predicting soil water contents. Less satisfactory results were obtained when the PTFs were applied to prediction of water content of sediments from deeper ground. The predicted unsaturated hydraulic conductivities show about the same uncertainty as for soils in a previous study. Systematic deviations of predicted values indicate that an adaptation of the PTFs to the specific conditions of deeper ground should be possible in order to improve predictions.
机译:最初根据土壤数据校准的八个pedotransfer函数(PTF)用于评估土壤和深层沉积物的水力特性。仅考虑在先前的研究中显示良好结果的PTF。为此,使用了两个数据集:一个数据集,来自巴伐利亚州(德国南部)的347个土壤层(802个测量对)的测得的压头与水含量的数据集,以及39个来自较深地面的第三纪沉积物未扰动样品的数据集(低至100 m的深度)位于阿尔卑斯山以北的糖蜜盆地中,其中包含840个测得的水含量,压头和不饱和导水率。对PTF的统计分析表明,它们在预测土壤含水量方面的性能非常相似。当将PTF应用于预测深层沉积物的含水量时,获得的结果不太令人满意。预测的非饱和水导率显示出与先前研究中的土壤相同的不确定性。预测值的系统偏差表明,应有可能使PTF适应更深地面的特定条件,以改善预测。

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