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首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Bearing Capacity of Circular Footing Resting on Fiber-Reinforced Pond Ash Overlying Soft Clay
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Bearing Capacity of Circular Footing Resting on Fiber-Reinforced Pond Ash Overlying Soft Clay

机译:纤维增强的粉煤灰覆盖软土的圆形基础承载力

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Model footing tests were conducted of a circular footing resting on a randomly distributed fiber-reinforced pond ash (RDFP) layer overlying soft clay. The effect of varying the thickness of the pond ash layer over soft clay was studied. The reinforcement effect also was investigated by adding polypropylene fibers of different lengths with varying content percentages into the pond ash layer overlying soft clay. The results indicated that there is significant improvement in the ultimate bearing capacity with an increase in fiber length, fiber percentage, and RDFP layer thickness. The results also indicated that there is significant improvement of 80% in ultimate bearing pressure when soft clay at the top is replaced by a compacted pond ash layer of 1.5D thickness. The ultimate bearing pressure increased 54% with an increase in fiber length from 6 to 18 mm for a 1.5D thickness of the RDFP layer at 1 % fiber content. The results of the model footing tests were validated with finite-element software PLAXIS 3D. The scale effect also was studied with the help of software by considering footings with diameters of 1, 2, 3, and 4 m.
机译:对圆形基础进行了模型基础测试,该基础基于随机分布在软粘土上的纤维增强的池塘灰(RDFP)层上。研究了改变软黏土上池塘灰层厚度的影响。还通过将不同长度,不同含量百分比的聚丙烯纤维添加到软土上的池塘灰层中来研究增强效果。结果表明,随着纤维长度,纤维百分比和RDFP层厚度的增加,极限承载力有了显着改善。结果还表明,当顶部的软粘土被厚度为1.5D的压实池塘灰层代替时,极限承载压力会显着提高80%。在纤维含量为1%的情况下,对于RDFP层厚度为1.5D的纤维,纤维长度从6毫米增加到18毫米,极限承载压力增加了54%。模型基础测试的结果已使用有限元软件PLAXIS 3D进行了验证。借助软件,还可以通过考虑直径为1、2、3和4 m的地基来研究比例效应。

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