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Structure evaluation of a tropical residual soil under wide range of compaction conditions

Lookup NU author(s): Dr Bruna LopesORCiD

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This is the authors' accepted manuscript of an article that has been published in its final definitive form by I C E Publishing, 2022.

For re-use rights please refer to the publisher's terms and conditions.


Abstract

Soil compaction is one of the most common techniques used to engineer the soil. It is especially appealing to developing countries for its cost-effective and sustainable attributes for improving the soil's geotechnical characteristics. The compaction process along with the complexity of residual soils, abundant in the tropics zone, can have an impact on the performance of geotechnical structures built with these soils. Therefore, it is important to understand the influence that certain compaction conditions have on the structure of these materials. To investigate that, mercury intrusion porosimetry tests were performed on compacted samples of a tropical residual soil from Brazil under different conditions of water content and compactive effort. Results show that the compacted soil under all studied conditions presents a bimodal pore-size distribution (PSD). It appears that the low availability of water within the macro-pores, hence suction, could have played a decisive role in maintaining the bimodal framework of the PSD. In this respect, this study contributes to a better understanding of the tropical residual soils’ structure when subjected to different compaction conditions, thus providing means to improve field applications.


Publication metadata

Author(s): Lopes BCFL, Kühn VO, Queiroz ACG, Caicedo B, Codrão-Neto MP

Publication type: Article

Publication status: Published

Journal: Géotechnique Letters

Year: 2022

Volume: 12

Issue: 2

Pages: 106-113

Print publication date: 01/06/2022

Online publication date: 30/03/2022

Acceptance date: 11/01/2022

Date deposited: 22/07/2022

ISSN (print): 2045-2543

ISSN (electronic): 2049-825X

Publisher: I C E Publishing

URL: https://doi.org/10.1680/jgele.21.00101

DOI: 10.1680/jgele.21.00101

ePrints DOI: 10.57711/yj3r-q034


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