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Prediction of swelling characteristics of remoulded and compacted expansive soils using free swell index

机译:使用自由膨胀指数预测重塑和压实膨胀土的膨胀特性

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摘要

Seasonal changes in moisture content result in volume change in expansive soils, which may damage structures founded on them. Evaluation of swelling characteristics of expansive soils, namely, swell potential and swelling pressure, is important for the design of foundations. Many relationships have been suggested for prediction of swell potential and swelling pressure from various index properties such as liquid limit, plasticity index, shrinkage index, activity, clay content, etc., and placement conditions such as initial dry unit weight, initial water content and initial surcharge pressure. Free swell index (FSI) indicates the potential expansiveness of a soil. FSI, being determined on the soil fraction <425 µm sieve like the other index properties of clays, is also an index property of an expansive soil. Hence, it can be used as a parameter in the relationships for swell potential and swelling pressure. This paper proposes relationships for predicting swell potential and swelling pressure of remoulded and compacted expansive soils using FSI and placement conditions. The relationships are based on experimental data for soil samples from 10 different sources.
机译:水分的季节性变化会导致膨胀土的体积变化,从而破坏基于膨胀土的结构。评价膨胀土的膨胀特性,即, 。 sup>膨胀势和膨胀压力,对于基础的 设计很重要。已经提出了许多关系,用于 各种指数特性(例如液体极限,塑性指数, 收缩指数,活性)预测膨胀势和溶胀压力。 ,粘土含量等,以及放置 条件,例如初始干重,初始含水量 和初始附加压力。自由膨胀指数(FSI)表示 土壤的潜在膨胀性。 FSI与其他粘土指标 一样,在<425 µm筛分的土壤筛分上确定 ,它也是膨胀 土壤的指标特性。因此,它可以用作溶胀势和溶胀压力的关系 的参数。本文提出了 关系,使用FSI和placement 条件来预测重塑和压实膨胀土的膨胀势和溶胀压力 。这些关系基于来自10个不同来源的土壤样品的实验数据

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  • 来源
    《Quarterly Journal of Engineering Geology & Hydrogeology》 |2004年第3期|00000217-00000226|共10页
  • 作者单位

    Department of Civil Engineering, JNTU College of Engineering, Kakinada 533 003, India;

    Department of Civil, Construction and Environmental Engineering, Iowa State University, Ames, IA 50011-3232, USA (e-mail: rsharma@iastate.edu);

    Department of Civil, Construction and Environmental Engineering, Iowa State University, Ames, IA 50011-3232, USA (e-mail: rsharma@iastate.edu);

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