基于指数特性的粘土膨胀压力经验模型

V. Jeevanantham
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引用次数: 1

摘要

摘要膨胀土在获得水分时发生体积膨胀。在这种土壤上建造的轻型结构将被向上的膨胀压力提起。膨胀土结构的膨胀特性决定了膨胀土结构的安全程度。在实验室中预测土壤膨胀压力需要近5天的时间(随土壤势的变化而变化),并且需要昂贵的测试设备。在我们的研究中,提出了利用土壤的指标性质即液限和塑性限来建立膨胀压力的相关性,这需要在实验室相对较短的时间内进行评估。用自由膨胀法对哥印拜陀公司限定范围内的20个动态压实的重塑土样品进行了膨胀压力试验。研究区域位于东经11008′49.25”北纬76053′36.28”、东经11012′05.58”N76055′57.84”、东经10059′16.52”北纬76052′17.47”、东经10057′00.59”北纬76057′43.71”四个坐标之间,在MATLAB中输入的实验数据令人满意,并通过曲线拟合方法提取相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Empirical Modeling on Swell Pressure of Clay using Index Properties
Abstract. Expansive soils undergo volume expansion, when it gains moisture content. Light structures constructed on this type of soil will be lifted by the upward swell pressure. Swelling characteristics decides the degree of safety of structures resting on expansive soil strata. Predicting the swell pressure of the soil consumes nearly 5 days of time (variable with respect to soil potential) in the laboratory as well as needs expensive testing setup. In our study, a correlation is proposed to develop for swell pressure using the index properties of soils namely liquid limit and plastic limit, which shall be assessed at the laboratory relatively short period of time. Swelling Pressure tests by Free Swell Method are performed on dynamically compacted 20 remolded soil samples collected within Coimbatore Corporation limit. The study area is between the four coordinates of 11008'49.25'' N 76053'36.28'' E, 11012’05.58’’ N76055'57.84'' E, 10059'16.52'' N 76052'17.47'' E, 10057'00.59'' N 76057'43.71'' E. Laboratory experimental data given as input in MATLAB gives satisfactory results and correlation is extracted from curve fitting method.
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