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Thermal Responses of Saturated Silty Clay During Repeated Heating-Cooling Processes

机译:反复加热-冷却过程中饱和粉质粘土的热响应

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The thermal responses of the saturated silty clay to repeated heating-cooling are studied in laboratory. Results show that the pore pressure induced by undrained heating increases with increasing temperature, but the peak pore pressure appears a degradation trend with increasing temperature cycles. During the consolidation process at an elevated temperature, the specimen contracts due to the dissipation of the pore pressure; however, the thermally induced pore pressure is under no conditions fully dissipated to zero, therefore, there always exists a residual pore pressure in the specimens once a thermal loading higher than the ambient temperature is applied. During the undrained cooling, pore pressure continues to decline and eventually falls below zero. During the isothermal consolidation at the original temperature, the specimen begins to expand due to water absorption caused by the negative pore pressure, and eventually reaches a steady value. In addition, the consolidation volumetric strain generated during the drainage process at 50℃ is greater than that during the water absorption process at 25℃, the difference seems to be most obvious for the first three cycles, and begins to diminish gradually thereafter.
机译:在实验室研究了饱和粉质粘土对反复加热-冷却的热响应。结果表明,不排水加热引起的孔隙压力随温度升高而增加,但峰值孔隙压力随温度循环的增加而呈现下降趋势。在高温下的固结过程中,由于孔隙压力的消散,试样收缩。然而,热致孔压在任何条件下都不会完全消散为零,因此,一旦施加高于环境温度的热负荷,样品中总会存在残余孔压。在不排水的冷却过程中,孔隙压力继续下降,最终降至零以下。在原始温度下的等温固结过程中,由于负孔隙压力引起的吸水,样品开始膨胀,最终达到稳定值。另外,在50℃下排水过程中产生的固结体积应变大于在25℃下吸水过程中的固结体积应变,这种差异似乎在前三个循环中最为明显,并在此后逐渐减小。

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