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Dynamic soil properties of nanoparticles and bioenzyme treated soft clay

机译:纳米颗粒和生物酶处理软粘土的动态土壤性质

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摘要

Among various soil improvement methods, stabilization using traditional additives (cement, lime, flyash, etc.) is very often used in soft clay soils. In recent times, nontraditional additives are used as a partial or a full replacement to the traditional additives for reducing the detrimental effect of excessive addition of these to the earth. The present study is focused on developing such a combination of non-traditional additives, which minimizes the use of traditional stabilizers. The study aims to evaluate the soil behavior under dynamic loading before and after the soft soil is treated with the optimum of Nano silica and Bioenzyme along with 1% of cement (cured for 28 days). Strain controlled cyclic triaxial tests, and piezoelectric bender element tests were conducted to evaluate the effect of treatment on various dynamic properties of the clay in particular shear modulus (G), damping ratio (D) and the small strain shear modulus (G(max)) respectively. The stabilization improves the shear modulus and damping ratio of the soil because the stress dissipation and energy absorption are more due to particle densification, pore volume reduction, and better bonding between the cemented particles. The results of cyclic triaxial and bender element tests indicate that the nano-silica in the presence of bioenzyme and cement can be a highly powerful technique in improving the moduli of the soil.
机译:在各种土壤改进方法中,使用传统添加剂(水泥,石灰,糊涂等)的稳定性通常用于软粘土土壤中。最近,非传统添加剂用作对传统添加剂的部分或全部替代,以降低过度加入地球的不利影响。本研究重点是开发这种非传统添加剂的组合,这最小化了传统稳定剂的使用。该研究旨在评估在纳米二氧化硅和生物酶的最佳含量和生物酶的最佳液体处理之前和之后的动态载荷下的土壤行为以及1%的水泥(固化28天)。进行应变控制的环状三轴试验,并进行压电弯曲元件试验,以评价治疗对粘土的各种动态性质的影响,特别是剪切模量(g),阻尼比(d)和小菌株剪切模量(g(max) ) 分别。稳定化改善了土壤的剪切模量和阻尼比,因为由于颗粒致密化,孔体积减少和粘合颗粒之间的更好的粘合,应力耗散和能量吸收更多。循环三轴和弯曲元素试验的结果表明,生物酶和水泥存在下的纳米二氧化硅可以是改善土壤模育的高度强大的技术。

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