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Models for predicting the seepage velocity and seepage force in a fiber reinforced silty soil

机译:纤维粉质粉质土中渗透速度和渗透力的预测模型

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Randomly reinforced soil is used in hydraulic projects such as temporary canals, earth dams, stream restoration and so on for controlling seepage. This paper presents an investigation into the effect of random reinforcement on the seepage velocity and seepage force in a silty soil. Experimental tests were carried out on randomly reinforced samples with two types of fiber at different lengths and percentages. The results show that the random reinforcement of soils with fiber is an effective technique in controlling the seepage velocity and seepage force. Regression models were developed based on the experimental data for determination the seepage velocity and seepage force. The proposed models include the length of fiber, fiber content of soil and hydraulic gradient. Comparison between the model predictions and the experimental results shows that the proposed models can satisfactorily predict the seepage velocity and seepage force for a randomly reinforced silty soil. Analysis of the results of the proposed models shows that the seepage velocity increases with increasing the hydraulic gradient but decreases with increasing fiber length and fiber content. In addition the seepage force increases with increasing the fiber length and fiber content of the soil. (C) 2016 Elsevier Ltd. All rights reserved.
机译:随机加固的土壤用于水利工程,例如临时运河,土坝,河流修复等,以控制渗流。本文对粉质土中随机补强对渗流速度和渗流力的影响进行了研究。对随机增强的样本进行了实验测试,样本中使用两种类型的纤维,长度和百分比不同。结果表明,纤维随机加固是控制渗流速度和渗流力的有效方法。根据实验数据建立了回归模型,以确定渗流速度和渗流力。提出的模型包括纤维长度,土壤纤维含量和水力梯度。模型预测与试验结果的比较表明,所提出的模型能够较好地预测随机加筋粉质土的渗透速度和渗透力。对建议模型结果的分析表明,渗流速度随水力梯度的增加而增加,但随纤维长度和纤维含量的增加而降低。另外,渗透力随着纤维长度和土壤纤维含量的增加而增加。 (C)2016 Elsevier Ltd.保留所有权利。

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