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Determination of macro-scale soil properties from pore scale structures: image-based modelling of poroelastic structures

机译:从孔隙尺度结构确定宏观尺度的土壤特性:基于图像的多孔弹性结构建模

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摘要

We show how a combination of X-ray computed tomography (X-CT) and image-based modelling can be used to calculate the effect of moisture content and compaction on the macroscopic structural properties of soil. Our method is based on the equations derived in Daly & Roose (2018 Proc. R. Soc. A >474, 20170141. ()), which we have extended so they can be directly applied to the segmented images obtained from X-CT. We assume that the soils are composed of air-filled pore space, solid mineral grains and a mixed phase composed of both clay particles and water. We considered three different initial soil treatments, composed of two different compaction levels and two different moisture contents. We found that the effective properties of the soils were unaffected by compaction over the range tested in this paper. However, changing the moisture content significantly altered the hydraulic and mechanical properties of the soils. A key strength of this method is that it enables the optimization or even design of soils composed from different constituents, with specific mechanical and hydraulic properties.
机译:我们展示了如何结合使用X射线计算机断层扫描(X-CT)和基于图像的建模来计算水分含量和压实度对土壤宏观结构特性的影响。我们的方法基于Daly&Roose(2018 Proc。R.Soc.A > 474 ,20170141.())中得出的方程式,我们对其进行了扩展,以便可以将其直接应用于分割后的图像从X-CT获得。我们假设土壤由充满空气的孔隙空间,固体矿物质颗粒和由粘土颗粒和水组成的混合相组成。我们考虑了三种不同的初始土壤处理方法,包括两种不同的压实度和两种不同的水分含量。我们发现,在本文测试的范围内,土壤的有效特性不受压实的影响。但是,改变水分含量会显着改变土壤的水力和机械性能。该方法的主要优势在于,它可以优化甚至设计由不同成分组成的土壤,并具有特定的机械和水力特性。

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