Test of the Rosetta Pedotransfer Function for Saturated Hydraulic Conductivity

Pedotransfer函数 永久萎蔫点 导水率 土壤科学 土壤质地 磁场容量 土壤水分 环境科学 土壤图 数字土壤制图 土壤级配 土工试验 堆积密度 数学 水文学(农业) 岩土工程 地质学
作者
Carlos Álvarez-Acosta,Robert J. Lascano,L. Stroosnijder
出处
期刊:Open Journal of Soil Science [Scientific Research Publishing, Inc.]
卷期号:02 (03): 203-212 被引量:17
标识
DOI:10.4236/ojss.2012.23025
摘要

Simulation models are tools that can be used to explore, for example, effects of cultural practices on soil erosion and irrigation on crop yield.However, often these models require many soil related input data of which the saturated hydraulic conductivity (K s ) is one of the most important ones.These data are usually not available and experimental determination is both expensive and time consuming.Therefore, pedotransfer functions are often used, which make use of simple and often readily available soil information to calculate required input values for models, such as soil hydraulic values.Our objective was to test the Rosetta pedotransfer function to calculate K s .Research was conducted in a 64-ha field near Lamesa, Texas, USA.Field measurements of soil texture and bulk density, and laboratory measurements of soil water retention at field capacity (-33 kPa) and permanent wilting point (-1500 kPa), were taken to implement Rosetta.Calculated values of K s were then compared to measured K s on undisturbed soil samples.Results showed that Rosetta could be used to obtain values of K s for a field with different textures.The Root Mean Square Difference (RMSD) of K s at 0.15 m soil depth was 7.81  10 -7 m•s -1 .Further, for a given soil texture the variability, from 2.30  10 -7 to 2.66  10 -6 m•s -1 , of measured K s was larger than the corresponding RMSD.We conclude that Rosetta is a tool that can be used to calculate K s in the absence of measured values, for this particular soil.Level H5 of Rosetta yielded the best results when using the measured input data and thus calculated values of K s can be used as input in simulation models.
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