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Erosion Characteristics of Silty to Clayey Soils Using EFA and Lab-Scaled Levee-Floodwall Tests

机译:利用EFA和实验室规模的堤坝-潮墙试验对粉质粘土质土壤的侵蚀特征

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The erodibility of levee material has an influence on scour generation in levee-floodwall systems. In this investigation, the effect of various soil parameters including compaction level, plasticity index, and saturation ratio on erosion rates was studied using two methods: lab-scaled physical models of levee-floodwall systems and the Erosion Function Apparatus (EFA). For physical models, a 1:20 scale of a typical levee on the banks of the Mississippi river was constructed. The effect of the floodwall and its inclination on levee erosion were investigated. For EFA tests, the soil samples were prepared in the same way as the materials prepared for physical model tests in order to compare the erosion rate characteristics of these methods. EFA test results show that the erosion rate for soils with more than 60 % saturation levels is more sensitive to change in saturation levels than changes in plasticity index or compaction levels. An erosion rate prediction model was developed for various so Is using EFA tests. The levee-floodwall tests show that the erosion rates at the crest are significantly more sensitive to soil parameters than at the slope. The erosion rates for levee-floodwall tests are much greater than the ones for EFA tests. Furthermore, the effect of floodwall inclination and presence in levees are discussed.
机译:堤坝材料的易蚀性对堤坝防洪墙系统中的冲刷产生有影响。在这项研究中,使用两种方法研究了各种土壤参数(包括压实度,可塑性指数和饱和比)对侵蚀速率的影响:堤防-防洪墙系统的实验室规模物理模型和侵蚀功能设备(EFA)。对于物理模型,在密西西比河两岸构建了1:20比例的典型堤防。研究了防洪墙及其倾角对堤防侵蚀的影响。对于EFA测试,土壤样品的制备方法与用于物理模型测试的材料相同,以便比较这些方法的侵蚀速率特征。 EFA测试结果表明,饱和度超过60%的土壤的侵蚀速率对饱和度的变化比可塑性指数或压实度的变化更敏感。使用EFA测试针对各种腐蚀速率预测模型进行了开发。堤防洪墙试验表明,坡顶的侵蚀速率对土壤参数的敏感性比坡度更高。堤防-洪水墙试验的侵蚀速率远大于全民教育试验的侵蚀速率。此外,还讨论了防洪墙倾斜和堤防存在的影响。

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