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首页> 外文期刊>KSCE journal of civil engineering >Influence of Compaction Method and Effort on Electrical Resistivity and Volume Change of Cohesive Soils
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Influence of Compaction Method and Effort on Electrical Resistivity and Volume Change of Cohesive Soils

机译:压实方法和努力对粘性土壤电阻率和体积变化的影响

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摘要

Engineered fills are enhanced by compaction to reduce compressibility and permeability. In-situ application of shallow densification methods involve static method with the use of compaction rollers. However, the compaction characteristics of soils are traditionally obtained in the laboratory using dynamic compaction method. Due to the difference in the mechanism of the two compaction methods, there is a variation in the soil fabric formed, quantification of which is scarce. In this research, influence of compaction effort and (dynamic and static) compaction methods on swell and compressibility of two soils of diverse geological formation are investigated. An indirect means of measuring microstructural changes in specimen characteristics using electrical resistivity is also investigated. Results indicate that the compaction effort and the method of compaction have a significant impact on the electrical resistivity and swelling potential. The yield stress of the compacted specimens is also influenced. However, the compressibility and rebound behaviour upon unloading, are obtained to be independent of both the compaction effort and the method of compaction.
机译:通过压实以减少可压缩性和渗透率来增强工程填充物。浅层致密化方法的原位应用涉及使用压实辊的静态方法。然而,使用动态压实方法在实验室中传统上获得土壤的压实特性。由于两种压实方法的机制差异,形成了土壤织物的变化,其量化是稀缺的。在这项研究中,研究了压实努力和(动态和静态)压实方法对两种不同地质形成土壤膨胀和可压缩性的影响。还研究了使用电阻率测量样品特性的微观结构变化的间接手段。结果表明,压实力和压实方法对电阻率和膨胀潜力产生了重大影响。压实样品的屈服应力也受到影响。然而,获得卸载时的可压缩性和反弹行为,可以独立于压实工作和压实方法。

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