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采用回归方法对中国黄土高原土石混合体的土壤水分保持曲线进行建模。

Modeling the soil water retention curves of soil-gravel mixtures with regression method on the Loess Plateau of China.

机构信息

Beijing Research & Development Center for Grass and Environment, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.

出版信息

PLoS One. 2013;8(3):e59475. doi: 10.1371/journal.pone.0059475. Epub 2013 Mar 15.

Abstract

Soil water retention parameters are critical to quantify flow and solute transport in vadose zone, while the presence of rock fragments remarkably increases their variability. Therefore a novel method for determining water retention parameters of soil-gravel mixtures is required. The procedure to generate such a model is based firstly on the determination of the quantitative relationship between the content of rock fragments and the effective saturation of soil-gravel mixtures, and then on the integration of this relationship with former analytical equations of water retention curves (WRCs). In order to find such relationships, laboratory experiments were conducted to determine WRCs of soil-gravel mixtures obtained with a clay loam soil mixed with shale clasts or pebbles in three size groups with various gravel contents. Data showed that the effective saturation of the soil-gravel mixtures with the same kind of gravels within one size group had a linear relation with gravel contents, and had a power relation with the bulk density of samples at any pressure head. Revised formulas for water retention properties of the soil-gravel mixtures are proposed to establish the water retention curved surface models of the power-linear functions and power functions. The analysis of the parameters obtained by regression and validation of the empirical models showed that they were acceptable by using either the measured data of separate gravel size group or those of all the three gravel size groups having a large size range. Furthermore, the regression parameters of the curved surfaces for the soil-gravel mixtures with a large range of gravel content could be determined from the water retention data of the soil-gravel mixtures with two representative gravel contents or bulk densities. Such revised water retention models are potentially applicable in regional or large scale field investigations of significantly heterogeneous media, where various gravel sizes and different gravel contents are present.

摘要

土壤水分保持参数对于量化包气带中的水流和溶质运移至关重要,而岩屑的存在显著增加了其变异性。因此,需要一种新的方法来确定土壤-砾石混合物的水分保持参数。生成这种模型的过程首先基于确定岩屑含量与土壤-砾石混合物有效饱和度之间的定量关系,然后将这种关系与先前的水分保持曲线(WRC)分析方程相结合。为了找到这种关系,进行了实验室实验,以确定用粘土壤土与页岩岩屑或卵石混合的土壤-砾石混合物的 WRC,这些混合物分为三个粒径组,具有不同的砾石含量。数据表明,同一粒径组内具有相同砾石的土壤-砾石混合物的有效饱和度与砾石含量呈线性关系,与任何测压水头下样品的体积密度呈幂函数关系。提出了用于土壤-砾石混合物水分保持特性的修正公式,以建立幂-线性函数和幂函数的水分保持曲面模型。通过回归分析和经验模型验证得到的参数分析表明,无论是使用单个砾石粒径组的实测数据还是使用具有较大粒径范围的三个砾石粒径组的实测数据,这些模型都是可以接受的。此外,具有较大砾石含量范围的土壤-砾石混合物的曲面回归参数可以通过两种代表性砾石含量或体积密度的土壤-砾石混合物的水分保持数据来确定。这种修正后的水分保持模型在存在各种砾石尺寸和不同砾石含量的情况下,可能适用于区域或大尺度的显著非均质地层的野外调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db11/3598802/7d57d8ccfe6b/pone.0059475.g001.jpg

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