Correlation of Soil Properties with Costus cupreifolius Maas Admixture during Stabilization

Akinbuluma Ayodeji Theophilus, C. Kennedy
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Abstract

The study investigated the changes in soil properties as a function bagasse ash proportion during soil stabilization. Addition of bagasse ash in soil during stabilization is carried out to improve the properties of soil susceptible to deformation under load effect. The bagasse ash was obtained from Costus cupreifolius mass. The experimental values obtained from maximum dry density (MDD), optimum moisture content (OMC), consistency limits, California bearing ratio (CBR) and unconfined compressive strength (UCS) were fitted to a linear model to ascertain the degree of correlation between the properties and the percentage of bagasse ash. Experimental results showed that bagasse ash improved the properties of the soil positively. Thus, the maximum dry density, optimum moisture content, and the consistency limits of the stabilized soil reduced with addition of bagasse ash, while the California bearing ratio and unconfined compressive strength of the soil were increased. The model also interpreted the fitted experimental observations with correlation coefficients ranging from 0.7501 to 0.9792. Therefore, using a mathematical model will be useful to predict the properties of soil for a given mix design without direct measurement, especially in the case where the instrument is prone to error. Application of model would also be useful for design and analysis.
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红木稳定过程中土壤性质与掺加红木的相关性
研究了蔗渣灰比例对土壤稳定过程中土壤性质的影响。为了改善土体在荷载作用下易变形的特性,在土体稳定过程中加入甘蔗渣灰。甘蔗渣灰分是由红木渣中提取的。将最大干密度(MDD)、最佳含水率(OMC)、稠度极限、加州承载比(CBR)和无侧限抗压强度(UCS)的实验值拟合为线性模型,以确定性能与甘蔗渣灰分百分比之间的相关程度。实验结果表明,甘蔗渣灰对土壤的性质有积极的改善作用。因此,蔗渣灰的加入降低了稳定土的最大干密度、最佳含水率和稠度极限,提高了稳定土的加州承载比和无侧限抗压强度。模型对拟合的实验观测值进行了解释,相关系数在0.7501 ~ 0.9792之间。因此,在没有直接测量的情况下,使用数学模型来预测给定混合设计的土壤特性是有用的,特别是在仪器容易出错的情况下。模型的应用对设计和分析也有帮助。
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