Effects of wetting and drying cycles on the swelling pressure and free swelling of expansive soil

IF 1.1 Q4 ENGINEERING, GEOLOGICAL Soils and Rocks Pub Date : 2023-11-03 DOI:10.28927/sr.2024.011122
Larissa Oliveira, Erinaldo Cavalcante
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Abstract

The aim of the current study is to investigate the influence of consecutive wetting and drying cycles on the free swelling and swelling pressure properties of a potentially expansive soil. The investigated sample consisting of high-plasticity inorganic clay with high consistencylimit values and extremely high swelling potential. The adopted methodology comprised free swelling and swelling pressure tests – based on the post-swelling loading method, under 0.5 kPa overload. Both tests were conducted in a cyclic manner by implementing eight wetting and drying cycles. Results have shown that the wetting and drying cycles acted as agents influencing the swelling pressure and free swelling properties of the expansive soil. It was found that the expansive soil sample, when moistened and then dried to its initial moisture content, time and again, showed higher values of swelling pressure and free swelling at the first moistening cycle. It was also observed that the expansive soil sample decreases its expansive behavior as the number of wetting and drying cycles increases.
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干湿循环对膨胀土膨胀压力和自由膨胀的影响
本研究的目的是研究连续干湿循环对潜在膨胀土自由膨胀和膨胀压力特性的影响。所研究的样品由高塑性无机粘土组成,具有高浓度限值和极高的膨胀势。采用的方法包括自由膨胀和膨胀压力试验-基于膨胀后加载法,在0.5 kPa过载下。这两项试验都以循环的方式进行,通过实施8个湿润和干燥循环。结果表明,干湿循环是影响膨胀土膨胀压力和自由膨胀特性的因素。研究发现,膨胀土试样经多次湿润、再干燥至初始含水率后,在第一次湿润循环中膨胀压力和自由膨胀值均较高。随着干湿循环次数的增加,膨胀土试样的膨胀性能降低。
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来源期刊
Soils and Rocks
Soils and Rocks ENGINEERING, GEOLOGICAL-
CiteScore
1.00
自引率
20.00%
发文量
49
期刊介绍: Soils and Rocks publishes papers in English in the broad fields of Geotechnical Engineering, Engineering Geology and Environmental Engineering. The Journal is published in April, August and December. The journal, with the name "Solos e Rochas", was first published in 1978 by the Graduate School of Engineering-Federal University of Rio de Janeiro (COPPE-UFRJ).
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