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Innovative thermal technique for enhancing the performance of prefabricated vertical drain during the preloading process

机译:创新的热技术,可在预加载过程中提高预制垂直排水的性能

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This paper examines the effect of raising the temperature of soft Bangkok clay, up to 90℃, on the performance of the prefabricated vertical drain (PVD) during the preloading process. The effect of temperature on the engineering behavior of soft Bangkok clay was first investigated using a modified triaxial test apparatus and flexible wall permeameter which can handle temperatures up to 100℃. The results of the triaxial tests on clay specimens demonstrate that raising the soil temperature increases its shear strength, under drained heating condition, as well as its hydraulic conductivity. In addition, large oedometer tests were performed to investigate the performance of PVD at elevated temperatures. The response of the soil sample with PVD for the thermal consolidation path which involved increasing the soil temperature at constant vertical effective stress condition and the thermo-mechanical path which involved increasing simultaneously both the soil temperature and the vertical effective stress were investigated. The consequent results indicated that the thermo-mechanical path shows promising results regarding the consolidation rate. For both reconstituted and undisturbed specimens, higher consolidation rate was observed for the soil specimen with PVD loaded under elevated temperature. This behavior can be attributed to the increase in the soil hydraulic conductivity as the soil temperature increases. Therefore, raising the soil temperature during the preloading period can enhance the performance of the PVD, particularly, by reducing the drainage retardation effects due to the smear zone around PVD.
机译:本文研究了在预压过程中将软曼谷黏土的温度提高到90℃对预制垂直排水管(PVD)性能的影响。首先使用改进的三轴测试仪和可承受高达100℃温度的柔性壁渗透仪,研究了温度对软曼谷黏土工程性能的影响。在黏土样品上进行的三轴试验结果表明,在排水加热条件下,升高土壤温度会提高其剪切强度以及水力传导率。此外,还进行了大型里程表测试,以研究高温下PVD的性能。研究了土壤样品在稳定的垂直有效应力条件下对热固结路径的响应和热力学路径对热固结路径的响应,其中热力学路径涉及同时升高土壤温度和垂直有效应力的条件。结果表明,热机械路径显示出关于固结率的有希望的结果。对于重构样品和未扰动样品,在高温下加载PVD的土壤样品观察到更高的固结率。这种行为可以归因于土壤水力传导率随土壤温度升高而增加。因此,在预压期间提高土壤温度可以提高PVD的性能,特别是通过减少由于PVD周围的污迹区而引起的排水延迟效应。

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