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Spatial Variability of Soil Parameters of the van Genuchten Model at a Regional Scale

机译:spatial Variability of soil parameters of the van Genuchten model at a Regional scale

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摘要

Spatial heterogeneity of soil water retention curves (SWRC) plays an important role in modelling the movement of water and solutes in soils. To characterize the spatial variability of SWRC parameters fitted by the van Genuchten (VG) equation, and then identify factors that closely correlated with the VG parameters, we collected undisturbed and disturbed soil samples from the upper 0-5cm soil layer at 382 sampling sites across the entire Loess Plateau of China (similar to 620000km(2)). We determined the SWRC and six other soil properties as well as nine environmental factors for each site. Results showed that the saturated water content ((s)) and a curve-shape parameter that is related to soil pore size distribution (n) were weakly spatially variable (coefficient of variation (CV)=15%), and that the residual soil water content ((r)) and a scaling parameter that is related to the inverse of the air entry pressure () were moderately (CV=96%) and strongly variable (CV=136%), respectively. Semivariograms of and log() were best-fitted by an isotropic exponential model, while those of (s) and log(n) were fitted by an isotropic spherical model. Fractal analysis indicated that log() demonstrated the most short-range variation, while log(n) reflected the importance of long-range variation. Bulk density and the contents of clay, silt, sand and soil organic carbon contributed greatly to the variations in the VG parameters (except ). However, the vegetation, topographic and climatic elements as well as land use also usually explained some of the variation. The VG parameters, at the regional scale, demonstrated different characteristics of spatial variation, which comprehensively reflected the combined effects of processes involving the soil, vegetation, topography and climate as well as effects of land use, which is often determined by human activity.
机译:土壤保水曲线(SWRC)的空间异质性在模拟土壤中水和溶质的运动中起着重要作用。为了表征通过范·格努赫滕(VG)方程拟合的SWRC参数的空间变异性,然后确定与VG参数密切相关的因素,我们从382个采样点的0-5cm上部土壤层收集了未扰动和扰动的土壤样品整个中国黄土高原(约620000km(2))。我们确定了每个站点的SWRC和其他六个土壤属性以及九个环境因子。结果表明,饱和水含量和与土壤孔径分布相关的曲线形状参数在空间上是微弱的变化(变异系数(CV)= 15%),并且残留土壤含水量((r))和与进气压力的倒数相关的缩放参数分别为(CV = 96%)和强变量(CV = 136%)。和log()的半变异图通过各向同性指数模型拟合最佳,而(s)和log(n)的半变异图通过各向同性球形模型拟合。分形分析表明log()表现出最大的近程变化,而log(n)反映了远距离变化的重要性。体积密度以及粘土,粉砂,沙子和土壤有机碳的含量极大地影响了VG参数的变化(除外)。但是,植被,地形和气候要素以及土地利用通常也可以解释其中的一些变化。在区域范围内,VG参数显示出不同的空间变化特征,这些特征综合反映了涉及土壤,植被,地形和气候的过程的综合影响以及土地利用的影响,而土地利用的影响通常由人类活动决定。

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