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Erosion and filtration of cohesive soils

机译:粘性土壤的侵蚀和过滤

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It is commonly accepted that cracks can be sustained in cohesive soils, allowing increased seepage and subsequent erosion of the soil through these cracks. To investigate the erosion rate and the size of particles eroded through a crack, a series of experimetns have been performed, following a procedure similar to the pinhole test. In these experiments, a sample of cohesive material is compacted in a 200mm long, 150mm diameter cylinder, and a 3mm pinhole formed through the sample. This modified pinhole experiment is able to determien the erosion rates and the size of particles which can be relied upon for self filtration at the filter interface. Results of the experiments show that there is a correlation between the size of the eroded particles and the original particle size distribution of the soil. For fine grained soils (with d_85<75mum), there is some degree of agreegation, where the eroded particles are larger than the original PSD of the soil. The amount of aggregation appears to be directly related to the fines content of the original soil. No Erosion Filter Tests have been carried out on the same materials. A positive correlation has been found between the size of eroded particles (represented by d_85EP) and the safe filter boundary (D_15bdy) defined by the NEF test. A relation D_15bdy/d_85EP=5 is a lower bound for the majority of NEF tests. This introduces a theoretical grounding for the empirical design criteria as determined yb NEF tests, described by Sherard and Dunnigan (1989).
机译:人们普遍认为,裂缝可以在粘性土壤中持续存在,从而使渗透率增加,并随后通过这些裂缝侵蚀土壤。为了研究侵蚀速率和通过裂纹侵蚀的颗粒尺寸,已经按照类似于针孔试验的程序进行了一系列实验。在这些实验中,将粘性材料样品压实在200mm长,150mm直径的圆柱体中,并在样品中形成3mm的针孔。修改后的针孔实验能够确定腐蚀速率和颗粒尺寸,在过滤器界面进行自过滤时可以依靠这些侵蚀速率和颗粒尺寸。实验结果表明,侵蚀颗粒的尺寸与土壤的原始颗粒尺寸分布之间存在相关性。对于d_85 <75mum的细颗粒土壤,存在一定程度的一致,其中侵蚀颗粒大于土壤的原始PSD。聚集的数量似乎与原始土壤的细粉含量直接相关。没有在相同的材料上进行侵蚀过滤器测试。已发现侵蚀颗粒的大小(由d_85EP表示)与NEF测试定义的安全过滤器边界(D_15bdy)之间存在正相关。对于大多数NEF测试,关系D_15bdy / d_85EP = 5是一个下限。这为Sherard和Dunnigan(1989)所描述的yb NEF测试确定的经验设计标准引入了理论基础。

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