Soft Soil Consolidation with the Electroosmosis Effect

Hurun Ain, Firman Kamil
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Abstract

Areas with geomorphology in plains or lowlands, such as Pontianak City, have soft soil and peat covering most of their area. Lands in areas with low soil bearing capacity, high water content, high compressibility properties, and high groundwater levels or even practically the same as the land surface. Theoretically, soil improvement is preferred over several other options such as relocation, redesign, and replacement of unsuitable soils. Electroosmosis is one of the effective methods to reduce the moisture content in soft clay to reduce the amount of settlement that occurs when loading is carried out. The use of electroosmosis by placing a conductor in the ground with a certain distance, then between the conductors, an electric current is given. By reducing the water content in the soil, the decrease in soil subsidence will decrease and increase the strength of the soil. This electroosmosis test was carried out in a laboratory with a test model using a PVC pipe tube with a length of 19 cm and a diameter of 15 cm using five conductor rods. The soil specimens are subjected to two cases: direct loading and preloading during the electroosmosis test. Tests were conducted to study the effect of the current magnitude applied with a particular voltage on the physical and mechanical properties of the soil. The tests showed a significant of settlement with 0.0679 cm and 0.0663 cm for direct loading and preloading with the current effect. The mechanical properties showed an improvement in the soil samples, which was indicated by a low compressibility index and an increase in the shear strength of the soil.
软土的电渗固结效应
地貌在平原或低地的地区,如Pontianak市,其大部分地区都有软土和泥炭覆盖。土壤承载力低、含水量高、压缩性高、地下水位高甚至与地表基本相同的地区的土地。从理论上讲,土壤改良优于其他几种选择,如搬迁、重新设计和更换不适宜的土壤。电渗透是降低软土含水率以减少加载过程中沉降量的有效方法之一。电渗透法的使用方法是在地面上放置一根导体,与地面保持一定的距离,然后在导体之间产生电流。通过降低土壤含水量,土壤沉降的减少将减少和增加土壤的强度。本电渗透试验在实验室进行,试验模型使用长19厘米、直径15厘米的PVC管,使用5根导体棒。在电渗试验中,土样分别经历了直接加载和预加载两种情况。进行了试验,以研究施加特定电压的电流大小对土壤物理和机械特性的影响。试验结果表明,在电流作用下,直接加载和预加载的沉降量分别为0.0679 cm和0.0663 cm。土样的力学性能得到改善,表现为压缩性指数降低,抗剪强度增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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