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Load-carrying Capacity Enhancement of Skirted Foundation Element by Electrokinetics

机译:电动基础提高裙式基础元件的承载能力

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The objective of this study is to enhance the load-carrying capacity of skirted foundations embedded in marine deposits by electrokinetics (EK). The focus of improvement is at the interface between the soil and foundation. A series of laboratory tests was performed in an EK-cell to determine the optimal configuration of the electrical field surrounding a skirted foundation. Two soils were tested: Yulchon clay (a natural marine sediment) and Welland sediment (a river sediment mixed with artificially prepared seawater). In each test, a steel plate was embedded in the soil to represent an element of a skirted foundation. Electrodes were installed in the vicinity of the steel plate and a voltage, either constant or intermittent, was applied over a period of time. The load-carrying capacity of the steel plates and the undrained shear strength of the adjacent soil were measured after electrokinetic treatment. The effect of the electrode layout and voltage application was evaluated through a comprehensive experimental program. It is shown that, by optimizing the electrode arrangement and implementing the polarity reversal, the load-carrying capacity of the steel plates increased up to 4 times, and that soil shear strength increased up to 3 times after sustained application of a DC voltage of 5.2 V for 14 days. The results obtained in this study lead to a large-scale laboratory study and will have the potential to be applied in offshore engineering practice.
机译:这项研究的目的是通过电动学(EK)增强埋在海床中的裙状地基的承载能力。改善的重点是土壤和地基之间的界面。在EK电池中进行了一系列实验室测试,以确定围绕裙边基础的电场的最佳配置。测试了两种土壤:Yulchon粘土(一种天然的海洋沉积物)和Welland沉积物(一种与人工制备的海水混合的河流沉积物)。在每个测试中,将一块钢板嵌入土壤中,以表示裙边基础的元素。将电极安装在钢板附近,并在一段时间内施加恒定或间歇电压。电动处理后,测量钢板的承载能力和相邻土壤的不排水剪切强度。通过全面的实验程序评估了电极布局和施加电压的效果。结果表明,通过优化电极布置并实现极性反转,在持续施加5.2的直流电压后,钢板的承载能力提高了4倍,土壤抗剪强度提高了3倍。 V为14天。这项研究中获得的结果导致了大规模的实验室研究,并将具有在海上工程实践中应用的潜力。

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