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CENTRIFUGE MODELING ON FIBER REINFORCED FLY ASH SLOPE

机译:纤维增强粉煤灰坡度的离心机建模

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Randomly distributed fiber reinforced soils have recently attracted increasing attention in geotechnical engineering. Due to non availability of the land construction of fly ash embankments with steep slopes is very important.For the experimental work natural fiber, coir, at fiber content of 1% (by dry weight) has been used. Direct shear test,unconfined compression test have been performed without and with coir fiber. Centrifuge tests have been performed on fly ash without and with coir fiber reinforcement at slope angle (0 = 71.5°). Centrifuge tests have performed to observe the effect of coir fiber reinforcement in fly ash slope models. All the centrifuge tests were performed at 80% compaction effort. Coir fiber reinforcement reduces the settlement of the slope and it fails at higher values of 'g', which means that fiber reinforced slopes, can sustain higher loads. Fiber reinforcement changes the brittle behavior of fly ash into ductile behavior. Factor of safety of all slope models have been found out using limit equilibrium method based on software, GEOSLOPE. Experimental results are compared with finite element analysis, using the software PLAXIS Version 8.
机译:随机分布的纤维增强土壤最近引起了岩土工程中的越来越关注。由于不可用的粉煤灰堤防与陡坡的粉煤灰桥接非常重要。对于实验性的工作天然纤维,益于纤维含量为1%(通过干重)。直接剪切试验,已经进行了不包含的压缩测试,没有和纤维。在粉煤灰中进行了离心机测试,倾斜角(0 = 71.5°),在粉煤灰上进行了无线灰和纤维增强。离心机测试已经进行了观察Coir纤维增强在粉煤灰斜率模型中的效果。所有离心机测试都以80%的压实工作进行。益智纤维增强率降低了斜坡的沉降,并且在“G”的较高值下失效,这意味着纤维增强斜率可以维持更高的载荷。纤维增强会使粉煤灰变为延性行为的脆性行为。已经发现了基于软件,GeoSlope的限制平衡方法,发现了所有斜坡模型的安全系数。使用软件PLAXIS版本8将实验结果与有限元分析进行比较。

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