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Shear and Hydraulic Properties of Compost-Amended Topsoils for Use on Highway Slopes

机译:堆肥修正的表土的剪切和液压性能用于高速公路斜坡

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摘要

The amount of municipal solid waste (MSW) generated in the US increases every year, and about 30% of the MSW generated is either recyclable or compostable. Utilization of compost-amended topsoils as a vegetative layer on highway slopes contributes to large-volume beneficial reuse of these materials. This study examines the shear and hydraulic properties of two types of composts, biosolids and leaf compost, and their blends with a topsoil for their potential use on highway slopes. Direct shear and consolidated-undrained triaxial shear tests were performed to obtain the shear strength parameters. Flexible-wall hydraulic conductivity tests and unsaturated hydraulic tests were performed to evaluate the saturated and unsaturated hydraulic behavior of the materials, respectively. Compost addition resulted in an increase in effective friction angle, whereas modest changes were observed in effective cohesion, total cohesion, and total friction angle of the topsoil. Two shape parameters determined via digital image analysis, angularity and relative form of 2-dimensional images, correlated well with the measured effective friction angles of the materials tested. Compost treatment resulted in an increase in saturated hydraulic conductivity and the plant-available water content. Unsaturated hydraulic conductivities of all materials were comparable at the matric potential of field capacity (10 kPa), and the compost-amended topsoils experienced 1-3 orders of decrease in their unsaturated hydraulic conductivities during the drying process.
机译:美国生成的城市固体废物(MSW)的数量每年增加,而产生的MSW中的约30%是可回收的或可堆肥。将堆肥修正的表土的利用作为公路斜坡上的营养层有助于这些材料的大量有益再利用。本研究审查了两种堆肥,生物糖和叶堆肥的剪切和液压性能,以及它们的混合物,用于顶部的高速公路斜坡潜在使用。进行直接剪切和固结 - 不介绍的三轴剪切试验以获得剪切强度参数。进行柔性壁液压导电性试验和不饱和液压试验以分别评价材料的饱和和不饱和液压行为。堆肥添加导致有效的摩擦角度的增加,而在有效的内聚力,总粘合和全部摩托的总摩擦角度下观察到适度的变化。通过数字图像分析,角度和2维图像的相对形式确定的两个形状参数,与所测试的材料的测量有效的摩擦角相比良好。堆肥处理导致饱和液压导电性和植物可用的水含量增加。所有材料的不饱和液压导电性在现场容量(10kPa)的原木电位上可比较,并且在干燥过程中,堆肥修正的表土在其不饱和液压导体中经历了1-3个降低。

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  • 来源
    《Journal of materials in civil engineering》 |2021年第8期|04021192.1-04021192.15|共15页
  • 作者单位

    Schnabel Engineering Inc. Baltimore MD 21207;

    Dept. of Civil Engineering Istanbul Technical Univ. Istanbul 34469 Turkey;

    Dept. of Civil and Environmental Engineering Univ. of Maryland 1163 Glenn Martin Hall College Park MD 20742;

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