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The effects of soil shrinkage during centrifuge tests on SWCC and soil microstructure measurements

机译:离心机萎缩在SWCC和土壤微育测量中的离心测试中的影响

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Significant soil shrinkage occurred during SWCC (soil-water characteristic curve) measurement using centrifuge methods and thus affects the soil microstructure. This paper deals with an experimental investigation aimed at correcting for SWCC measurements with soil shrinkage considered and at studying the evolution of the microstructure induced by soil consolidation along drying path. Microstructure evolution of samples subjected to different pressure heads is determined using mercury intrusion porosimetry (MIP) and scanning electron microscopy (SEM) techniques. The relationship between the soil microstructural features and the soil mechanical and hydraulic properties is explained from the microstructure point of view. The results show that after the centrifugation ended, the height shrinkages of the soil samples were 10.36, 8.86, 6.39, 4.16, and 2.37 mm, while the corresponding initial bulk densities were 1.30, 1.36, 1.46, 1.55, and 1.68 g/cm(3). The corrected volumetric water contents were higher than the uncorrected values at a specific pressure head. The soil shrinkage, void ratio, and degree of saturation changed at a decreasing rate as the pressure head gradually increased. These changes occurred because of the greater compressibility of the macropores, which allowed for consolidation, and because the water in the macropores was removed at a relatively low pressure head. The drastic decrease in the pore volume and the dominant diameter of such macropores inhibited further and obvious soil consolidation at a higher pressure head and inhibited the flow of water out of the soil matrix.
机译:使用离心机方法测量SWCC(土壤 - 水特性曲线)测量期间发生显着的土壤收缩,从而影响土壤微子组织。本文涉及旨在校正与考虑土壤收缩的SWCC测量的实验研究,并在研究沿着干燥路径的土壤固结诱导的微观结构的演变。使用汞侵入孔隙瘤(MIP)和扫描电子显微镜(SEM)技术测定经受不同压力头的样品的微观结构演变。从微观结构的角度解释了土壤微结构特征与土壤机械和液压性能之间的关系。结果表明,在离心结束后,土壤样品的高度收缩为10.36,8.86,6.39,4.16和2.37 mm,而相应的初始散装密度为1.30,1.36,1.46,1.55和1.68g / cm( 3)。校正的体积水含量高于特定压力头处的未矫正值。由于压头逐渐增加,土壤收缩,空隙率和饱和度以降低而改变。由于大孔的压缩性允许固结,并且由于在相对低的压头处除去宏孔中的水,因此发生了这些变化。孔体积的激烈降低和这种大孔的显性直径抑制了更高的压力头的进一步和明显的土壤固结,并抑制了土壤基质的水流。

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