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Influence of Drying and Wetting Cycles on SWCCs of Fine-Grained Soils

机译:干湿循环对细粒土壤SWCC的影响

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The soil-water characteristics curve (SWCC) is greatly influenced by the path that is followed for suction measurement (I.e., drying or wetting path) and the number of cycles of these paths to which the soil is exposed. To evaluate the influence of these parameters, drying- and wetting-path SWCCs of three fine-grained soils were developed for single and multiple cycles by employing the Aquasorp Isotherm generator. This device has been primarily employed for food products, powders, and amorphous materials for determination of their moisture sorption isotherm, which relates moisture content to water activity. As water activity can be mathematically related to soil suction, the Aquasorp~R can be used for developing the SWCC. Hence, demonstrating the potential of the Aquasorp~R for characterizing fine-grained soils becomes essential. The present study has been focused at highlighting the possible uncertainties associated with establishment of the SWCCs (both during drying and wetting paths) and the benefits and limitations of the Aquasorp~R in achieving these objectives. Furthermore, by employing mercury intrusion porosimetry (MIP), the significance of capillarity on soil suction, which in turn governs the SWCC, has been demonstrated.
机译:土壤-水特征曲线(SWCC)受吸力测量遵循的路径(即干燥或湿润路径)以及这些路径暴露于土壤的循环次数的影响很大。为了评估这些参数的影响,通过使用Aquasorp等温发生器,对三种细粒土壤的干燥路径和润湿路径SWCC进行了单循环和多循环开发。该设备主要用于食品,粉末和无定形材料中,以测定其水分吸附等温线,该等温线将水分含量与水分活度联系起来。由于水分活度在数学上与土壤吸力有关,因此Aquasorp〜R可用于开发SWCC。因此,证明Aquasorp〜R表征细粒土壤的潜力变得至关重要。本研究的重点是强调与建立SWCC有关的可能不确定性(在干燥和湿润过程中)以及Aquasorp〜R在实现这些目标方面的好处和局限性。此外,通过采用水银压入孔隙率法(MIP),已经证明了毛细作用对土壤吸力的重要性,而土壤吸力又决定了SWCC。

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