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A study on the geotechnical characterization and water retention characteristic curve of pond ash

机译:池灰岩土性鉴定与水保留特性曲线研究

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摘要

The understanding of the engineering behaviour of unsaturated soil is totally dependent on the water retention characteristic curve (WRCC). In this paper, a comprehensive study of the WRCCs of pond ash along with the ash's geotechnical behaviour has been made. The WRCC has been drawn experimentally using a Fredlund device based upon the pressure plate technique for both wetting and drying cycles. Further, an investigation was carried out to study WRCC hysteresis of pond ash. There exists a considerable hysteresis in drying and wetting curves of pond ash sample. The different WRCC models were used to fit the experimental WRCC data. The effect of compaction on WRCC was also studied. The air entry value in the case of a loose sample is low and the sample gets nearly desaturated at low soil suction as compared to a dense sample. Also, the wetting WRCC is predicted using the Feng and Fredlund model as it is difficult and time consuming to measure the whole hysteresis. The predicted results are compared with the measured wetting WRCC. Since the direct measurement of unsaturated hydraulic conductivity is difficult to obtain in engineering practices, the unsaturated hydraulic conductivity function is predicted using the measured WRCC as the input parameter using SEEP/W software.
机译:对不饱和土的工程行为的理解完全依赖于水保留特性曲线(WRCC)。在本文中,已经制定了对池塘的WRCC的综合研究以及灰烬的岩土动态行为。基于润湿和干燥循环的压力板技术,使用FREDLUND器件通过实验使用FREDLUND装置进行了实验。此外,进行了研究以研究池灰的WRCC滞后。池灰样品的干燥和润湿曲线存在相当大的滞后。不同的WRCC模型用于符合实验性WRCC数据。还研究了压实对WRCC的影响。与致密样品相比,松散样品的情况下的空气入口值低,样品在低土壤吸力下几乎去饱和。此外,使用冯和弗雷德列德模型预测润湿WRCC,因为测量整个滞后难以耗时。将预测结果与测量的润湿WRCC进行比较。由于在工程实践中难以获得不饱和液压导电性的直接测量,因此使用测量的WRCC作为使用SEIP / W软件的输入参数来预测不饱和液压导电功能。

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