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Pore pressure and consolidation of saturated silty clay induced by progressively heating/cooling

机译:逐步加热/冷却引起的饱和粉质粘土孔隙压力和固结

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摘要

The thermal pore pressure and consolidation of a saturated silty clay are experimentally studied. The specimen was heated progressively from the room temperature of 25 ℃ to 85℃ (T=25℃→35℃→45℃... → 85 ℃), and then cooled from 85 ℃ to 25 ℃ (T= 85 ℃ → 75 ℃ → 65 ℃... → 25 ℃), with (case 1) or without (case 2) drainage between temperature stages at four confining pressures (50, 100, 150 and 200 kPa, respectively). It shows that during the undrained heating/cooling, the pore pressure reaches a peak at the time when the specimen is heated to the required temperature and then decreases slightly, and it declines to a minimum at the time when the specimen is cooled to the required temperature and then increases slightly. Such phenomenon can be attributed to the adjustment of soil structure induced by the interaction of solid grains with pore water. On the other hand, during the drained heating/cooling, the maximum pore pressure increases with the increase of temperature stages, and the normalized negative pore pressures show a decreasing trend with the decrease of temperature stages. This appears to be especially obvious as the applied confining pressures decrease. It is also observed that consolidation volumetric strains during the isothermal drainage increase significantly with the increase of temperature stage, and the reduction in the volumetric strains due to absorption after cooling shows a decreasing trend with the decrease of temperature stage.
机译:对饱和粉质粘土的热孔隙压力和固结进行了实验研究。将样品从25℃的室温逐渐加热到85℃(T = 25℃→35℃→45℃...→85℃),然后从85℃冷却到25℃(T = 85℃→75℃) ℃→65℃...→25℃),在四个约束压力(分别为50、100、150和200 kPa)下,在温度级之间进行排水(情况1)或不进行排水(情况2)。结果表明,在不排水的加热/冷却过程中,试样被加热至所需温度时,孔压达到峰值,然后略有下降,而试样被冷却至所需温度时,孔压降至最低。温度然后略有升高。这种现象可归因于由固体颗粒与孔隙水的相互作用引起的土壤结构的调整。另一方面,在排空的加热/冷却过程中,最大孔隙压力随温度阶段的增加而增加,而归一化负孔隙压力随温度阶段的减少而呈下降趋势。随着施加的围压降低,这似乎尤其明显。还可以观察到,等温排水过程中固结体积应变随温度阶段的增加而显着增加,而冷却后吸收引起的体积应变的减少则随温度阶段的减少而呈下降趋势。

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