Prediction of California Bearing Ratio from Consistency and Compaction Characteristics of Fine-grained Soils

K. A. Rashed, N. Salih, T. Abdalla
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引用次数: 1

Abstract

Soil’s characteristics are essential for the successful design of projects such as airports runway and flexible pavement. CBR (California Bering Ratio) is one of the significant soil characteristics for highways and airports projects. Thus, the CBR property can be used to determine the subgrade reaction of soil through correlations. Many of the soil geotechnical parameters such as compaction characteristics (Maximum Dry Density, MDD; Optimum Moisture Content, OMC), and consistency parameters (Liquid Limit, LL; Plastic Limit, PL; Plasticity Index, PI) can be in charge of changes that happen in soil CBR value. Soaked and/or non-soaked conditions of soils also affect CBR value. Hence, testing soils in a laboratory for CBR calculation is time-consuming that needs notable effort. Therefore, this study aims to generate some useful correlations for soil’s CBR with compaction and consistency parameters for 85 samples of fine-grained soils. The study trials were applied on natural soil samples of various places in Sulaimani Governorate, Northern Iraq. Statistical analysis has been carried out by using SPSS software (Version 28). Soaked CBR is counted, which is important for conditions such as rural roads that remain prone to water for few days. Based on the statistical analysis, there is a significant correlation between LL, PL, PI, MDD, and OMC with CBR as the dependent variable as a single variable equation with R2 of  0.7673, 0.5423, 0.5192, 0.6489, and 0.51, respectively. In addition, the highest value of R2 correlation was obtained between CBR value with consistency and compaction properties as a multiple regression equation with R2 of 0.82. The obtained equations for correlation purposes are successfully achieved and can be used, notably, to estimate CBR value.
从细粒土的稠度和压实特性预测加州承载比
土壤的特性对于机场跑道和柔性路面等项目的成功设计至关重要。加州白令比(CBR)是公路和机场工程中重要的土壤特性之一。因此,CBR特性可以通过相关性来确定土壤的路基反力。许多岩土参数,如压实特性(最大干密度,MDD;最佳水分含量(OMC)和稠度参数(液限,LL;塑料极限,PL;塑性指数(PI)可以反映土壤CBR值的变化。浸水和/或未浸水的土壤条件也会影响CBR值。因此,在实验室测试土壤进行CBR计算是费时的,需要显著的努力。因此,本研究旨在为85个细粒土样品的土壤CBR与压实度和一致性参数之间建立一些有用的相关性。研究试验应用于伊拉克北部苏莱曼尼省各地的天然土壤样品。使用SPSS软件(Version 28)进行统计分析。对浸透的CBR进行计数,这对于农村道路等几天内容易进水的情况很重要。经统计分析,以CBR为因变量的LL、PL、PI、MDD、OMC呈单变量方程,相关系数R2分别为0.7673、0.5423、0.5192、0.6489、0.51。此外,CBR值与一致性和压实性之间的R2相关性为多元回归方程,R2为0.82,最高。我们成功地得到了用于相关目的的方程,并可用于估计CBR值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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