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首页> 外文期刊>International journal of geomechanics >Numerical Assessment of Equivalent Radius for Electrokinetic Geosynthetics Electrodes during Electroosmotic Consolidation
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Numerical Assessment of Equivalent Radius for Electrokinetic Geosynthetics Electrodes during Electroosmotic Consolidation

机译:电渗固结过程中电动土工合成电极等效半径的数值评估

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Electrokinetic geosynthetics (EKG) has been used as an electrode to perform electroosmotic consolidation for the improvement of soft soil. To use previous analytical theories to analyze the drainage and consolidation behavior of soil mass, the band-shaped EKG electrodes need to be converted to cylindrical electrodes; however, no definitive principle for this conversion is available. In the present study, six commonly used equivalent equations for a prefabricated vertical drain (PVD) were proposed for the conversion of the EKG electrode, and a numerical model was developed to evaluate their validity in terms of electric current, average degree of consolidation, and surface settlement. The effects of electrode configuration and electrode dimensions are also discussed based on the numerical results. Considering the overall performance on the analysis of the electroosmotic consolidation process, the equivalent equations were recommended to convert the band-shaped electrode to a cylindrical electrode. The electrode configuration and electrode dimensions showed a significant effect on the electroosmosis process. The hexagonal electrode configuration presented larger electric current, average degree of consolidation, and settlement than the parallel and rhombic electrode configurations. With the increase in electrode width and thickness, the electric current, average degree of consolidation, and settlement increased. (C) 2018 American Society of Civil Engineers.
机译:电动土工合成材料(EKG)已用作电极进行电渗固结,以改善软土。要使用以前的分析理论来分析土壤团块的排水和固结行为,需要将带状的心电图电极转换为圆柱状电极。但是,此转换没有确定的原理。在本研究中,提出了六个预制垂直排水(PVD)常用的等效方程式,用于EKG电极的转换,并建立了一个数值模型,以评估它们在电流,平均固结度和电流强度方面的有效性。表面沉降。基于数值结果,还讨论了电极配置和电极尺寸的影响。考虑到电渗固结过程分析的整体性能,建议使用等效方程式将带状电极转换为圆柱形电极。电极配置和电极尺寸对电渗过程显示出显着影响。与平行和菱形电极配置相比,六角形电极配置具有更大的电流,平均固结度和沉降。随着电极宽度和厚度的增加,电流,平均固结度和沉降度增加。 (C)2018美国土木工程师学会。

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