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Effect of sand on the vacuum consolidation of dredged slurry

机译:沙对疏slurry泥浆真空固结的影响

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摘要

Vacuum preloading is often used to improve the geotechnical properties of dredged slurry. Although the performance of this method has improved with rapidly developing technology, soil columns usually formed on the drainage boundary induce the decrease of permeability around the boundary, thereby limiting the further development of this method. To address this issue, this paper proposes a method for pretreating the slurry combined with sand prior to vacuum consolidation. This method partially replaces the fine particles with sand to reduce the formation of soil columns. Two groups of vacuum preloading tests were performed to investigate the effect of sand content and sand grain size on the vacuum consolidation of dredged slurry. The test results revealed that for a given sand grain size, increasing the sand content of the sand-slurry mixture increased the pore water drainage and accelerated the dissipation of pore water pressure, thereby increasing the vane shear strength. In contrast, for a constant sand content, the samples containing coarse sand exhibited increased pore water drainage and accelerated dissipation of pore water pressure, thereby increasing the vane shear strength of the soil.\ud\ud
机译:真空预压通常用于改善疏slurry泥浆的岩土性能。尽管随着快速发展的技术该方法的性能得到了改善,但是通常在排水边界上形成的土柱会导致边界周围的渗透率降低,从而限制了该方法的进一步发展。为了解决这个问题,本文提出了一种在真空固结之前对砂浆和砂浆进行预处理的方法。该方法用沙子部分替代了细颗粒,以减少土壤柱的形成。进行了两组真空预压试验,以研究含砂量和粒度对疏slurry泥浆真空固结的影响。测试结果表明,对于给定的砂粒尺寸,增加砂浆混合物中的砂含量会增加孔隙水的排泄并加速孔隙水压力的耗散,从而提高叶片的抗剪强度。相反,对于恒定的砂含量,包含粗砂的样品表现出增加的孔隙水排泄和加速的孔隙水压力消散,从而增加了土壤的叶片抗剪强度。

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