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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Erosion Mechanisms of Organic Soil and Bioabatement of Piping Erosion of Sand
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Erosion Mechanisms of Organic Soil and Bioabatement of Piping Erosion of Sand

机译:有机土壤的侵蚀机理与砂土管道侵蚀的生物减缓

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This paper presents the findings of a preliminary research program that aimed to investigate the mechanisms governing the progression of piping erosion in organic soils and attempted to use the findings to reduce the severity of piping erosion of sand. The hypothesis was that the presence of organics within mineral soils results in a reduction in piping erosion progression. Erosion behaviors of the soils were quantified using a simple erosion test with a preformed hole to simulate an initial piping channel. The research was split into five test phases. In Phase 1, the influence of grain-size distribution was eliminated to develop a preliminary understanding of the role that organic matter plays in the erosion process. The results indicated that organic matter likely contributed to a reduction in piping erosion. The second phase excluded both grain-size distribution and individual particle shape as variables in the erosion process. The results further confirmed the connection between organic matter content and erosion resistance. The third phase revealed the positive correlation between the reduced piping erosion and increased organic matter content. The fourth phase investigated the quantitative relationship between certain biologically derived substances (polysaccharides and glomalin) and piping erosion reduction. The positive correlations that were preliminarily derived from this phase indicated that these substances likely play a major role in reducing piping erosion. The final phase comprised of introducing organic matter into mineral soil and quantifying the subsequent changes in geomechanic properties. The results suggested that the introduction of organic materials into mineral soil decreases strength, increases consolidation settlement, and reduces permeability.
机译:本文介绍了一项初步研究计划的发现,该计划旨在研究控制有机土壤中管道侵蚀进展的机制,并试图利用这些发现降低沙子管道侵蚀的严重性。假设是矿物土壤中有机物的存在会导致管道侵蚀进程的减少。土壤的侵蚀行为通过使用带有预先形成的孔的简单侵蚀测试来模拟初始管道通道来量化。该研究分为五个测试阶段。在阶段1中,消除了晶粒尺寸分布的影响,从而初步了解了有机物在侵蚀过程中的作用。结果表明有机物可能有助于减少管道腐蚀。第二阶段排除了粒度分布和单个颗粒形状作为腐蚀过程中的变量。结果进一步证实了有机物含量与抗侵蚀性之间的联系。第三阶段显示管道侵蚀减少与有机物含量增加之间呈正相关。第四阶段研究了某些生物衍生物质(多糖和gloomalin)与管道腐蚀减少之间的定量关系。从此阶段初步得出的正相关关系表明,这些物质可能在减少管道腐蚀中起主要作用。最后阶段包括将有机物质引入矿质土壤并量化随后的地质力学性质变化。结果表明,将有机材料引入矿质土壤会降低强度,增加固结沉降并降低渗透率。

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