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Effects of freeze-thaw on settlement of fine grained soil subjected to cyclic loading

机译:冻融对循环荷载作用下细粒土沉降的影响

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摘要

The dominant soil deposits in the seismically active Arctic region are of fine-grained characteristics. Behavior of such soil deposits under dynamic loading is typically influenced by the freeze-thaw phenomenon as well as the variation of the ground temperature. In this extensive experimental study, settlement of fine-grained soils due to seismic loading is investigated. Reconstituted soil samples were tested under laboratory conditions to study the effect of freeze-thaw and lowered ground temperature. A strong correlation between the settlement potential and developed excess pore pressure during cyclic loading was found to exist for all freeze-thaw conditions. The settlement increased with increasing excess pore pressure. Subjecting the soil to freeze-thaw cycles decreased the settlement potential. A substantial decrease in volumetric strain of the soil occurred within the first two cycles of freeze-thaw. The number of dynamic loading cycles and the level of induced shear strain were also found to influence the settlement; the larger the number of loading cycles and induced shear strain the greater the settlement, for all freeze-thaw conditions. Another factor affecting the cyclic settlement was the variation in ground temperature. The soil experienced the smallest settlement at near-freezing temperature of 0.5 degrees C.
机译:地震活跃的北极地区的主要土壤沉积物具有细粒特征。这种土壤沉积物在动态载荷下的行为通常受冻融现象以及地面温度变化的影响。在这项广泛的实验研究中,研究了由于地震荷载引起的细粒土的沉降。在实验室条件下测试了重建的土壤样品,以研究冻融和降低地面温度的效果。发现在所有冻融条件下,沉降潜力与循环加载过程中产生的过量孔隙压力之间都存在很强的相关性。随着过量孔隙压力的增加,沉降增加。使土壤经受冻融循环会降低沉降潜力。在冻融的前两个周期内,土壤的体积应变大大降低。还发现了动态载荷循环次数和诱导剪切应变水平会影响沉降。在所有冻融条件下,加载周期和诱导剪切应变的数量越大,沉降越大。影响循环沉降的另一个因素是地面温度的变化。在接近冻结温度0.5摄氏度时,土壤的沉降最小。

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