由数字显微镜图像导出的土壤孔隙大小分布在水保持曲线测定中的适用性

IF 1.3 Q3 AGRONOMY
Yuki Hayashi
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引用次数: 0

摘要

水流的数值模拟需要保水曲线(WRC)的信息;然而,收购它既费时又费钱。在本研究中,评估了数字显微镜拍摄的土壤二维(2D)图像在WRC测量中的适用性。为此,在地表(10-15 cm)和地下(22.5-27.5 cm)深度采集4个未受干扰的土壤样品,获取2D图像,并采用常规方法——压力板法测量wrc。为了得到wrc,采用以下三种方法手动提取土壤图像中的土壤孔隙大小分布:方法1和方法2分别将图像中的模糊区域和暗区假设为土壤孔隙,方法3将孔隙边界假设为明亮部分,将该区域连线并划分为孔隙。方法3在较深的深度比表面深度有更大的孔隙(半径为75µm)。这一趋势与压板法相同。三种方法的wrc均能很好地拟合对数正态模型。在所有方法中,θe参数值在表层大于深层,压板法也有类似的结果。我们讨论了参数的适用性。用压板法确定θe,用图像法确定其他参数(ψm和σ)是有效的。从这些分析中,可以说证明了从基于图像的方法获得WRC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Applicability of soil pore size distribution derived from digital microscopy images to determination of water retention curve

Applicability of soil pore size distribution derived from digital microscopy images to determination of water retention curve

Information on the water retention curve (WRC) is required for the numerical simulation of water flow; however, its acquisition is time- and cost-consuming. In this study, the applicability of two-dimensional (2D) image of soil taken by a digital microscope to WRC measurement was assessed. For this purpose, four undisturbed soil samples were collected at surface (10–15 cm) and undersurface (22.5–27.5 cm) depths to acquire 2D images and measure WRCs from the conventional method, pressure plate method. To derive the WRCs, soil pore-size distribution in soil images was manually extracted using the following three methods: In Methods 1 and 2, the fuzzy region and the dark region, respectively, in the image were assumed to be a soil pore, and in Method 3, the pore boundary, being assumed to be a bright part, connected the lines and divided the region into pores. Method 3 had much large-size pores (>75 µm in radius) at deeper depths than at surface depths. This trend was the same as the pressure plate method. The WRCs in three methods were well fitted to the lognormal model. In all methods, the values of parameter of θe were larger at surface layers than at deeper depths, of which similar result was also seen in the pressure plate method. We discussed applicability of the parameters. It is effective to determine θe from the pressure plate method and the other parameters (ψm and σ) from the image-based method. From those analyses, it could be said to prove to obtain WRC from an image-based method.

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来源期刊
Agrosystems, Geosciences & Environment
Agrosystems, Geosciences & Environment Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
2.60
自引率
0.00%
发文量
80
审稿时长
24 weeks
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