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首页> 外文期刊>Environmental Monitoring and Assessment >Predicting soil water content at - 33 kPa by pedotransfer functions in stoniness 1 soils in northeast Venezuela
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Predicting soil water content at - 33 kPa by pedotransfer functions in stoniness 1 soils in northeast Venezuela

机译:利用pedotransfer函数预测委内瑞拉东北部石质1土的-33 kPa土壤含水量

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Soil water content is a key property in the study of water available for plants, infiltration, drainage, hydraulic conductivity, irrigation, plant water stress and solute movement. However, its measurement consumes time and, in the case of stony soils, the presence of stones difficult to determinate the water content. An alternative is the use of pedotransfer functions (PTFs), as models to predict these properties from readily available data. The present work shows a comparison of different widely used PTFs to estimate water content at-33 kPa (WR-33kPa) in high stoniness soils. The work was carried out in the Caramacate River, an area of high interest because the frequent landslides worsen the quality of drinking water. The performance of all evaluated PTFs was compared with a PTF generated for the study area. Results showed that the Urach's PTF presented the best performance in relation to the others and could be used to estimate WR-33kPa in soils of Caramacate River basin. The calculated PTFs had a R-2 of 0.65. This was slightly higher than the R-2 of the Urach's PTF. The inclusion of the rock fragment volume could have the better results. The weak performance of the other PTFs could be related to the fact that the mountain soils of the basin are rich in 2:1 clay and high stoniness, which were not used as independent variables for PTFs to estimate the WR-33kPa.
机译:在研究植物可用水,渗透,排水,水力传导,灌溉,植物水分胁迫和溶质运移的过程中,土壤水分是一项关键属性。然而,它的测量消耗时间,并且在石质土壤的情况下,难以确定水含量的石头的存在。一种替代方法是使用pedotransfer函数(PTF),作为从容易获得的数据中预测这些属性的模型。本工作显示了不同的广泛使用的PTF的比较,以估算高石质土壤中-33 kPa(WR-33kPa)的水含量。这项工作是在卡拉马卡特河(Caramacate River)上进行的,卡拉马卡特河是人们高度关注的地区,因为频繁的山体滑坡使饮用水质量恶化。将所有评估的PTF的性能与为研究区域生成的PTF进行了比较。结果表明,Urach的PTF表现出最好的性能,可用于估算Caramacate流域土壤中的WR-33kPa。计算得出的PTF的R-2为0.65。这比Urach的PTF的R-2略高。包含碎石块体积可能会有更好的结果。其他PTF的性能较弱可能与该盆地的山地土壤富含2:1黏土和高石质化这一事实有关,这并未用作PTF估计WR-33kPa的自变量。

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