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首页> 外文期刊>Journal of Science and Technology of Agriculture and Natural Resources >Investigating the Local Scour around Group Bridge Piers in Cohesive Soils
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Investigating the Local Scour around Group Bridge Piers in Cohesive Soils

机译:研究粘性土中群桥墩周围的局部冲刷

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One of the main reasons for bridge failure is the local scour around the pier. Pier groups are popular in the structural designs due to economical and geotechnical reasons. The mechanism of scouring at the pier groups is more complicated than the single one. In this study, the scour around group piers in the sandy soil and a mixture of sand and clay in some relative compaction equal to 90% and the optimum moisture was studied. The arrangement of the group piers was 1pier * 3pier and 3pier * 1pier along and transverse of the flow direction, respectively, at the interval space of D, 2D and 2.5D intervals. The effect of the Bentonite clay content was investigated. Finally, by using Kaolinite clay, the effect of the clay mineral was studied. The results showed that the scouring depth was different not only in cohesive and non- cohesive soils, but also according to the type of the clay mineral. The use of 10% bentonite clay mixed with sand reduced scour more than 90%, as compared to the sandy soil. On the other hand, using 15% of kaolin in the similar conditions reduced scour depth by only a 34%, in comparison to the sandy soil.
机译:桥梁破坏的主要原因之一是码头周围的局部冲刷。由于经济和岩土方面的原因,墩组在结构设计中很受欢迎。墩组的冲刷机制比单个的更为复杂。在这项研究中,研究了砂土中群墩周围的冲刷以及相对压实度等于90%的沙子和粘土混合物,并研究了最佳水分。组墩沿D方向,D方向和D方向的间隔空间分别为1pier * 3pier和3pier * 1pier。研究了膨润土含量的影响。最后,通过使用高岭石粘土,研究了粘土矿物的作用。结果表明,不仅在粘性和非粘性土壤中,冲刷深度都不同,而且根据粘土矿物的类型而不同。与沙质土壤相比,将10%的膨润土与砂混合可以减少90%以上的冲刷。另一方面,与沙质土壤相比,在类似条件下使用15%的高岭土可使冲刷深度仅减少34%。

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