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Effects of electrode configuration on electro-osmotic consolidation

机译:电极构型对电渗整合的影响

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Electro-osmotic consolidation is an effective technique to treat soft soil with low hydraulic conductivity. In practice, the electrode may be installed in different configurations. In order to study the effects of electrode configuration, four main electrode configurations are concluded from the previous work on laboratory experiments and field tests. Subsequently, a 3D numerical model coupling the seepage field, the stress and strain field and the electrical field is employed to analyze the effects of electrode configuration and electrode space. The results indicated that the triangular configuration and the square configuration with one cathode surrounded by eight anodes could achieve larger average surface settlement and smaller differential settlement. The influence of electrode space was mainly observed on the differential settlement and the results illustrated that the smallest differential settlement could be achieved by keeping the representative element regular in the triangular configuration and the square configuration with one cathode surrounded by eight anodes.
机译:电渗透固结是一种用低液压导电性治疗软土的有效技术。实际上,电极可以以不同的配置安装。为了研究电极配置的影响,从先前的实验室实验和现场测试中得出了四个主电极配置。随后,采用耦合渗流场,应力和应变场和电场的3D数值模型来分析电极配置和电极空间的影响。结果表明,三角形配置和具有八个阳极围绕的一个阴极的方形配置可以实现更大的平均表面沉降和较小的差动沉降。主要在差动沉降上观察到电极空间的影响,并且通过将代表性元件保持在三角形配置和方形配置中,可以实现最小的差动沉降,以及由八个阳极围绕的一个阴极围绕的方形配置来实现最小的差动沉降。

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