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首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Joint Multifractal Analysis of Scaling Relationships Between Soil Water-Retention Parameters and Soil Texture
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Joint Multifractal Analysis of Scaling Relationships Between Soil Water-Retention Parameters and Soil Texture

机译:土壤保水参数与土壤质地尺度关系的联合多重分形分析

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Soil water-retention characteristics at measurement scales are generally different from those at application scales, and there is scale disparity between them and soil physical properties. The relationships between two water-retention parameters, the scaling parameter related to the inverse of the air-entry pressure (alpha(vG), cm(-1)) and the curve shape factor related to soil pore-size distribution (n) of the van Genuchten water-retention equation, and soil texture (sand, silt, and clay contents) were examined at multiple scales. One hundred twenty-eight undisturbed soil samples were collected from a 640-m transect located in Fuxin, China. Soil water-retention curves were measured and the van Genuchten parameters were obtained by curve fitting. The relationships between the two parameters and soil texture at the observed scale and at multiple scales were evaluated using Pearson correlation and joint multifractal analyses, respectively. The results of Pearson correlation analysis showed that the parameter alpha(vG) was significantly correlated with sand, silt, and clay contents at the observed scale. Joint multifractal analyses, however, indicated that the parameter alpha(vG) was not correlated with silt and sand contents at multiple scales. The parameter n was positively correlated with clay content at multiple scales. Sand content was significantly correlated with the parameter n at the observed scale but not at multiple scales. Clay contents were strongly correlated to both water-retention parameters because clay content was relatively low in the soil studied, indicating that water retention was dominated by clay content in the field of this study at all scales. These suggested that multiple-scale analyses were necessary to fully grasp the spatial variability of soil water-retention characteristics.
机译:测量尺度上的土壤保水特性通常与应用尺度上的不同,并且它们与土壤物理性质之间存在尺度差异。两个保水参数之间的关系,与进气压力的倒数相关的缩放参数(alpha(vG),cm(-1))和与土壤孔隙尺寸分布(n)相关的曲线形状因子之间的关系van Genuchten的保水方程和土壤质地(沙,淤泥和粘土含量)在多个尺度上进行了检验。从位于中国阜新的一个640米断面中收集了128个未受干扰的土壤样本。测量土壤保水曲线,并通过曲线拟合获得van Genuchten参数。分别使用Pearson相关和联合多重分形分析,评估了两个参数与观测尺度和多个尺度下土壤质地之间的关系。皮尔森相关分析的结果表明,在所观察的范围内,参数alpha(vG)与沙子,粉砂和粘土含量显着相关。但是,联合分形分析表明,参数α(vG)与多个尺度上的泥沙含量无关。在多个尺度上,参数n与粘土含量呈正相关。在观察到的尺度上,沙含量与参数n显着相关,但在多个尺度上却没有。粘土含量与两个保水参数密切相关,因为在研究的土壤中粘土含量相对较低,这表明在所有规模的研究领域中,保水率均由粘土含量决定。这些表明,多尺度分析对于充分掌握土壤保水特征的空间变异性是必要的。

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