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Erschienen in: Bulletin of Engineering Geology and the Environment 4/2023

01.04.2023 | Original Paper

A novel unsaturated drainage layer in capillary barrier cover for slope protection

verfasst von: Xiaokang Li, Xu Li, Yang Wu, Liang Gao

Erschienen in: Bulletin of Engineering Geology and the Environment | Ausgabe 4/2023

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Abstract

Capillary barrier covers (CBCs) applied in slope protection pose a significant risk of percolation in humid regions. This study proposes a novel unsaturated drainage layer (UDL) and corresponding design criterion for CBCs with UDL in slope protection. First, a physical model test was conducted to analyze the mechanisms and influencing factors of the UDL performance under heavy rainfall. Second, the applicability of CBC with UDL in slope protection was numerically investigated using a 3-m slope. Third, a preliminary design criterion for the UDL was proposed and verified. The major findings are as follows: (1) The newly added UDL has a drainage effect, which can discharge the infiltrating water retained in the fine layer, thus preventing the percolation of CBC. (2) The saturated permeability coefficient of the UDL has a critical value, which is essential for achieving an ideal drainage state. In this state, the infiltration flux can be freely drained through the UDL, and there is no risk of breakthrough. (3) The air-entry value of the UDL should exceed the residual value of the coarse layer, and the saturated permeability coefficient of UDL is recommended as 100 times that of the fine layer. Overall, this research proves that a CBC with UDL can provide adequate slope protection through appropriate design and well-selected material. It has the potential for application in slope and landfill protection in humid regions.

Graphical Abstract

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Metadaten
Titel
A novel unsaturated drainage layer in capillary barrier cover for slope protection
verfasst von
Xiaokang Li
Xu Li
Yang Wu
Liang Gao
Publikationsdatum
01.04.2023
Verlag
Springer Berlin Heidelberg
Erschienen in
Bulletin of Engineering Geology and the Environment / Ausgabe 4/2023
Print ISSN: 1435-9529
Elektronische ISSN: 1435-9537
DOI
https://doi.org/10.1007/s10064-023-03093-8

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