首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Consequences on water retention properties of double-porosity features in a compacted silt
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Consequences on water retention properties of double-porosity features in a compacted silt

机译:压实淤泥中双孔隙特征保水特性的后果

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The paper deals with an experimental investigation aimed at studying microstructural features and their consequences on water retention properties of statically compacted unsaturated silt. The evolution of the microstructure of the aggregate fabric induced by compaction is investigated by studying the pore size distribution changes under different initial conditions (void ratio and water content). The material used is low plasticity silt from Jossigny near Paris, France. A series of mercury intrusion porosimetry tests (MIP) were performed at different void ratios and water contents to provide microstructural information. The arrangement of aggregation/particles and pore network was also investigated with environmental scanning electron microscopy (ESEM). The MIP data were used to determine the water retention curve on drying for the specific pore network configuration induced on compaction. The MIP data were used to formulate and calibrate a multimodal water retention model for a specific pore network configuration, which is obtained by linear superposition of subcurves of a modified van Genuchten type. The study is then complemented with controlled suction oedometer tests on compacted samples to obtain the water retention properties of the material at two different void ratios. Finally, we compare the water retention properties obtained by the simulated progression of the different pore network configurations induced on the hydraulic path with the water retention properties under suction-controlled conditions. Good agreement between the two methods for the drying path is reached.
机译:本文进行了一项旨在研究微观结构特征及其对静态压实不饱和淤泥保水性能的影响的实验研究。通过研究不同初始条件(孔隙率和含水量)下孔径分布的变化,研究了压实引起的骨料织物微观结构的演变。使用的材料是法国巴黎附近的Jossigny的低塑性淤泥。在不同的孔隙率和水含量下进行了一系列的压汞法(MIP),以提供微观结构信息。还使用环境扫描电子显微镜(ESEM)研究了聚集体/颗粒和孔网络的排列。 MIP数据用于确定压实时诱导的特定孔网络构型在干燥时的保水率曲线。 MIP数据用于针对特定的孔网配置来制定和校准多峰保水模型,该模型通过线性修改van Genuchten型子曲线的叠加获得。然后,对研究进行补充,对压实样品进行受控的吸气饱和度计测试,以在两种不同的空隙率下获得材料的保水性能。最后,我们将通过在液压路径上诱导的不同孔隙网络配置的模拟进程获得的保水性能与在抽吸控制条件下的保水性能进行比较。两种方法在干燥路径上达成了良好的一致性。

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