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Evaluation of Cyclic Behavior of Fine-Grained Soils Using the Energy Method

机译:能量法评价细粒土的循环特性

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While seismic waves propagate through soil deposits, a part of their energy dissipates which results in a decrease in the amplitude of the applied shear stresses. To better understand the mechanisms leading to the dissipation of applied energy in fine-grained soils, undisturbed specimens having different geotechnical characteristics obtained from a site investigation after 1999 Kocaeli earthquake, were tested in a series of cyclic triaxial tests. Analysis of cyclic lest data suggests that portions of fine-grained soil deposits, i.e., silts and clays could have developed high excess pore pressures and significant shear strains during cyclic loadings which contribute to stability problems. The effects of various factors such as confining stress, dynamic stress amplitude, and pore-water pressure accumulation on the cyclic softening of fine-grained soils were investigated and evaluated using the energy criterion.
机译:地震波通过土壤沉积物传播时,一部分能量消散,导致施加的切应力幅度减小。为了更好地理解导致细粒土壤中施加能量消散的机理,在一系列循环三轴试验中对从1999年科贾埃利地震后的现场调查获得的具有不同岩土特性的未扰动标本进行了测试。对循环试验数据的分析表明,在循环载荷过程中,细粒土壤沉积物的一部分(即淤泥和粘土)可能会产生高的过大孔隙压力和明显的剪切应变,这会引起稳定性问题。研究了围护应力,动应力幅值和孔隙水压力累积等多种因素对细粒土循环软化的影响,并根据能效准则进行了评价。

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