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Freeze-thaw and consolidation tests on Suncor mature fine tailings (MFT)

机译:在Suncor成熟细尾矿(MFT)上进行冻融和固结测试

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This paper presents the findings of a laboratory investigation of the effects of freeze-thaw, and sulfuric acid and quicklime amendment on Suncor mature fine tailings (MFT) post-thaw geotechnical behaviour and soil micro and macro-fabric. This paper gives the results of a consolidation test program on Suncor MFT using a large strain consolidation apparatus along with constant head flow tests to evaluate the void ratio versus effective stress and void ratio versus hydraulic conductivity data for three types of MFT specimens. The large scale and small scale fabric (macro-fabric and micro-fabric) of these specimens were also examined. The results indicated that freeze-thaw can effectively reduce the initial void ratio and the compressibility of untreated and amended MFT. Freeze-thaw can also significantly increase the hydraulic conductivity of MFT, which in combination with reduced compressibility enhances the MFT consolidation. These results were supported by changes observed in the macro and micro-fabric of the tested MFT specimens.
机译:本文介绍了实验室解冻,硫酸和生石灰改良剂对Suncor成熟细尾矿(MFT)解冻后的岩土行为以及土壤微观和宏观结构的影响的研究结果。本文给出了使用大型应变固结设备在Suncor MFT上进行固结测试程序的结果,以及恒定的头部流动测试,以评估三种类型的MFT标本的空隙率与有效应力以及空隙率与水力传导率的数据。还检查了这些样品的大型和小型织物(宏织物和微织物)。结果表明,冻融可有效降低未处理和修正的MFT的初始空隙率和可压缩性。冻融还可以显着提高MFT的水力传导率,这与降低的可压缩性相结合,可以增强MFT的固结性。这些结果得到了测试的MFT样品的宏观和微观结构变化的支持。

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