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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Nonlinear Determination of Suction Compression Index in Expansive Soils for Heave Prediction
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Nonlinear Determination of Suction Compression Index in Expansive Soils for Heave Prediction

机译:膨胀土中吸收压缩指数的非线性测定升降预测

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Climatic conditions easily allow for volume change of expansive soils. This happens due to the wetting and drying cycles that affect the moisture active zone. The suction compression index (γ_h) is the key parameter that relates volumetric changes to soil suction changes in unsaturated soils. It is defined as the slope of the suction-volumetric strain relationship. This relationship is essentially nonlinear and the slope is determined for an idealized form of the relationship. Therefore, the need for a precise γ_h determination method has always been in demand. The more accurate -γ_h is determined, the more accurate soil movements can be predicted and taken care of early in the design stage of a project. Accordingly, more money can be saved from either the repair costs or the initial costs by avoiding overdesign. The purpose of this paper is to introduce an original testing method for γ_h determination. The testing method uniquely incorporates volumetric and suction measurements in a new and practical way utilizing simple digital imaging. The testing method unprecedentedly integrates statistical modeling for determination of incremental γ_h in order to cover the entire nonlinearity of the suction-volumetric strain relationship. This is done by fitting the S-shaped relationship by a well-known class of statistical functions called cumulative distribution functions (CDFs). Incremental γ_h, is estimated by estimating the CDF at every suction value. The appropriateness of using these estimates to describe the suction-volumetric strain relationship is evaluated using the Kolmogorov-Smirnov (K-S) goodness of fit test. Furthermore, 95% confidence intervals of the superposed curves are also used to assess the appropriateness of the CDF estimates. The new testing method is compared against other techniques in the literature and proven reliable results.
机译:气候条件很容易允许膨胀土的体积变化。这是由于影响水分有源区的润湿和干燥循环。吸入压缩指数(γ_H)是关键参数,其将体积变化与不饱和土壤中的土壤吸入变化相关。它被定义为吸入体积应变关系的斜率。这种关系基本上是非线性的,并且确定斜率以实现关系的理想形式。因此,对精确γ_H确定方法的需求始终有所要求。确定更精确的-γ_H,可以预测更准确的土壤运动并在项目的设计阶段进行。因此,通过避免过度设计,可以从维修成本或初始成本中保存更多的资金。本文的目的是引入γ_h确定的原始测试方法。测试方法用简单的数字成像,以新的和实用的方式唯一地包含体积和吸入测量。测试方法前所未有地集成了统计建模以确定增量γ_H的确定,以覆盖抽吸体积应变关系的整个非线性。这是通过拟合S形关系通过称为累积分布函数(CDF)的统计函数的众所周知的统计功能来完成的。通过在每次抽吸值估计CDF来估计增量γ_H。使用这些估计来描述用于描述吸入体重应变关系的适当性是使用Kolmogorov-Smirnov(K-S)的配合测试的良好评估。此外,叠加曲线的95%置信区间也用于评估CDF估计的适当性。将新的测试方法与文献中的其他技术进行比较,并证明了可靠的结果。

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