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Determination of the Plasticity Index of Soils with Fine-Grained Soils Using Methylene Blue Test

机译:用亚甲基蓝试验测定细粒土壤土壤塑性指数

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The amount of fine material available in the soil is significant in Atterberg limits and methylene blue tests. In the context of Atterberg limits, increased amount of clay minerals contained in the soil increases liquid and plastic limit values; however, increasing sand content reduces the moisture content reducing the water retention capacity of the soil which in return reduces the plasticity index (PI) value. In the case of methylene blue test, which is used to specify the quality of the amount of fine material, existence of clay in the medium increases the pollution level of the sand and the amount of methylene solution (V1) used. In this study, soil classes were determined and pollution rates were identified with Atterberg limits, pycnometer, sieve analysis, hydrometer analysis and methylene blue tests conducted on 11 different natural soil samples collected from different regions. From the data obtained, first the relationship between PI and methylene blue (MB) was examined and was evaluated according to the results of the “single regression” method. Furthermore, the other coefficient of uniformity (Cu), coefficient of graduation (Cc), unit weight of soils (γs) parameters obtained from experimental studies were also subjected to “multiple regression analysis” in order to reveal their impact on the MB and this impact was confirmed taking both statistical analyses into account.
机译:土壤中可用的细材料在Atterberg限制和亚甲基蓝色试验中具有显着性。在Atterberg限制的背景下,土壤中含有的粘土矿物量增加增加了液体和塑料极限值;然而,增加的砂含量降低了降低土壤的水保留容量的水分含量,其换热降低了可塑性指数(PI)值。在亚甲基蓝试验的情况下,用于指定精细材料量的质量,培养基中的粘土的存在增加了砂的污染水平和所用亚甲基溶液(V1)的量。在该研究中,确定了土壤类别,并在从不同地区收集的11种不同的天然土壤样品上鉴定了Atterberg限制,Pycnometer,筛分分析,液压仪分析和亚甲基蓝试验。从获得的数据中,首先检查PI和亚甲基蓝(MB)之间的关系,并根据“单次回归”方法的结果评价。此外,从实验研究中获得的另一种均匀系数(Cu),毕级系数(Cc),土壤(γs)参数的单位重量也受到“多元回归分析”,以揭示其对MB的影响确认对统计分析进行了确认的影响。

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