首页> 外文期刊>Acta geodynamica et geomaterialia >CHARACTERIZATION AND FINITE ELEMENT ANALYSIS OF LIME AND POLYMER TREATED ULTRA-SOFT CLAY SOILS USING THE ELECTRICAL RESISTIVITY AND MINIATURE PENETROMETER METHODS
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CHARACTERIZATION AND FINITE ELEMENT ANALYSIS OF LIME AND POLYMER TREATED ULTRA-SOFT CLAY SOILS USING THE ELECTRICAL RESISTIVITY AND MINIATURE PENETROMETER METHODS

机译:用电阻率和微型透光仪方法对石灰和聚合物处理超软粘土土壤的特征及有限元分析

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The characterization of ultra-soft soil behavior is one of the most difficult challenges since the water content in such soils is very high. Hence, nondestructive or special measurement is required. Therefore, the behavior of untreated and treated ultra-soft soil was characterized using both miniature penetrometer and electrical methods. The ultra-soft soil was prepared with 2 % to 10 % bentonite. The soil with 10 % bentonite was treated with 2 % to 10 % lime and with 1 % to 10 % polymer separately. The pH, CIGMAT miniature penetrometer, and electrical resistivity combined with the measured shear strength from the modified vane shear device were used to characterize the ultra-soft soils. The CIGMAT miniature penetrometer penetration varied linearly with the shear strength of the untreated and treated soft soils with 10 % bentonite. Relative electrical resistivity decreased by 246 % when the bentonite content was increased from 2 % to 10 % in the ultra-soft soil. The addition of 10 % of the lime to the ultra-soft soil with 10 % of bentonite content decreased the relative electrical resistivity by 171 %. The addition of 10 % of the polymer to the ultra-soft soil with 10 % of bentonite content reduced the relative electrical resistivity by 545 %. Power law, linear and hyperbolic models were used to predict the shear strength-electrical resistivity relationship for the untreated, lime-treated and polymer-treated ultra-soft soils respectively. The CIGMAT miniature penetrometer was modeled using 3-D axisymmetric finite element method, which predicted the penetration of CIGMAT penetrometer that agreed well with the experimental results of the ultra-soft soils.
机译:超软土壤行为的表征是因为这种土壤中的水含量非常高,因此是最困难的挑战之一。因此,需要无损或特殊测量。因此,使用微型渗透度计和电气方法表征了未处理和处理的超软土壤的行为。用2%至10%膨润土制备超软土壤。用10%膨润土的土壤用2%至10%石灰处理,分别用1%至10%的聚合物处理。使用来自改性叶片剪切装置的测量剪切强度的pH,CIGMAT微型渗滤体和电阻率用于表征超软土壤。 CIGMAT微型渗透度计穿透与未处理和处理的软土的剪切强度线性变化,具有10%膨润土。当膨润土含量从超软土壤中的2%增加到10%时,相对电阻率降低了246%。向超软土壤中添加10%的石灰,10%的膨润土含量降低了相对电阻率的171%。向超软土壤中加入10%的聚合物,10%的膨润土含量将相对电阻率降低545%。电力法,线性和双曲模型用于预测分别对未处理,石灰处理和聚合物处理的超软土壤的剪切强度 - 电阻率关系。 CIGMAT微型渗透度数采用3-D轴对称有限元法进行了建模,这预测了CIGMAT渗透度仪的渗透,这与超软土壤的实验结果很好。

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