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Some investigations to quantify hysteresis associated with water retention behaviour of fine-grained soils

机译:一些量化与细粒土壤保水行为相关的滞后现象的研究

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The soil water retention characteristics curve (SWRC) has been reported to be quite useful for estimation of unsaturated soil properties.However, the uniqueness of SWRC is questionable due to hysteresis associated with the drying- and wetting-path SWRCs and this poses great challenge in utilising the SWRC for reliable estimation of unsaturated soil properties.Although hysteresis associated with SWRCs has been extensively studied for coarse-grained soils, due to limited studies on wetting-path SWRC for fine-grained soils, the hysteresis for fine-grained soils is not well understood.The present work attempts to address this gap, by studying the drying- and wetting-path SWRCs for eight different finegrained soils by employing Dew point Potentiameter (WP4C®), Environmental Chamber and Controlled Water Sprinkling method.The study employs the concept of 'Suction Hysteresis', ψ_h, for quantification of hysteresis.Further, the influence of various soil-specific properties on the variation of ψ_h-water content relationship (viz., slope of variation of suction hysteresis, S_(ψh)) has also been studied and demonstrated.The findings of the study are quite encouraging and it has been realised that extensive studies on soils of different characteristics would be quite useful in quantifying the variation of SWRC during drying and wetting cycles.
机译:据报道,土壤保水特性曲线(SWRC)对于估算非饱和土壤特性非常有用,但是由于干燥和润湿路径SWRC的滞后性,SWRC的独特性值得怀疑,这在土壤中提出了巨大的挑战。利用SWRC可靠地估计非饱和土的特性尽管粗粒土的SWRC滞后现象已得到广泛研究,但由于对细粒土的湿润路径SWRC的研究有限,因此细粒土的滞后现象尚不明确。本工作试图通过使用露点电位仪(WP4C®),环境箱和受控洒水方法研究八种不同细粒土壤的干燥和润湿路径SWRC来解决这一差距。吸力滞后性ψ_h的值,用于量化滞后性。此外,各种土壤特性对ψ变化的影响_h-水含量关系(即吸力滞后变化的斜率,S_(ψh))也得到了研究和证明,该研究的结果令人鼓舞,并且已经认识到对不同特性的土壤进行广泛研究会在量化干燥和润湿周期中SWRC的变化时非常有用。

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