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Thermo-hydro-mechanical behaviour of sodium silicate-cemented paste tailings in column experiments

机译:硅酸钠胶泥尾矿在柱实验中的热-水-力学行为

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摘要

The coupled evolution of the main performance properties (thermal, hydraulic, mechanical) of underground cemented paste tailings that contain sodium silicate as chemical admixture are studied by means of unsaturated column experiments. Two columns have been built to simulate the thermo-hydro-mechanical (THM) behaviour of the aforementioned cemented paste tailings (called gelfill, GF) under drained and undrained conditions. The GF columns are cured at room temperature for 28 days. The suction and temperature developments during the hydration process are monitored. When the curing phase has been completed, the cylindrical samples are taken out from the columns to evaluate the thermal, hydraulic and mechanical properties of GF. Uniaxial compressive strength (UCS), saturated hydraulic conductivity, and thermal conductivity tests are conducted. The results show that the mechanical, hydraulic and thermal properties of GF columns are coupled. The UCS values of GF are strongly coupled to heat development, saturation and suction development within the GF. In addition, the UCS outcomes, saturated hydraulic conductivity, and thermal conductivity tests for samples obtained from the GF columns show higher values than small samples. This study has demonstrated that the coupled THM effect on GFs is an important factor for consideration in the designing of cost-effective, safe and durable GF structures. The results presented in this paper will contribute to a better understanding of the THM behaviour of underground GF structures.
机译:通过不饱和柱试验研究了含硅酸钠作为化学外加剂的地下胶泥尾矿主要性能(热,水,力学)的耦合演化。已经建立了两根塔,以模拟在排水和不排水条件下上述胶结糊状尾矿(称为gelfill,GF)的热-水-机械(THM)行为。 GF柱在室温下固化28天。监测水合过程中的吸力和温度变化。固化阶段完成后,从圆柱中取出圆柱状样品,以评估GF的热,液压和机械性能。进行了单轴抗压强度(UCS),饱和水力传导率和导热率测试。结果表明,GF色谱柱的力学,水力和热性能是相互耦合的。 GF的UCS值与GF内的热量发展,饱和和吸力发展密切相关。另外,从GF色谱柱获得的样品的UCS结果,饱和水力传导率和导热率测试显示出比小样品更高的值。这项研究表明,耦合的THM对GFs的影响是设计成本有效,安全和耐用的GF结构时要考虑的重要因素。本文介绍的结果将有助于更好地理解地下GF结构的THM行为。

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