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Assessment of Geosynthetic Materials for Tunnel Drains: Laboratory Tests and Image Analyses

Authors
Jo, YoungseokCha, WonjunYoo, Wan-KyuKim, Bumjoo
Issue Date
Nov-2024
Publisher
대한토목학회
Keywords
Calcium carbonate (CaCO<sub>3</sub>); Discharge capacity; Energy-dispersive X-ray spectrometry (EDS); Geosynthetic materials; Laboratory test; Secondary scanning microscopy (SEM); Tunnel drainage systems
Citation
KSCE Journal of Civil Engineering, v.28, no.11, pp 1 - 9
Pages
9
Indexed
SCIE
SCOPUS
KCI
Journal Title
KSCE Journal of Civil Engineering
Volume
28
Number
11
Start Page
1
End Page
9
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/22839
DOI
10.1007/s12205-024-1690-3
ISSN
1226-7988
1976-3808
Abstract
Tunnel drainage systems are crucial design factors in tunnels because the accumulation of groundwater at the back of linings can affect tunnel safety. Geotextiles are used to facilitate the dissipation of pore-water pressure. However, chemical agents in the water can lead to clogging as tunnels age. In this study, laboratory tests and image analysis, namely Secondary Scanning Microscopy (SEM) and Energy-dispersive X-ray Spectrometry (EDS), were conducted to assess the drain performance of five geosynthetic materials: four geocomposites and one three-layered Non-Woven Needle-Punched (NWNP) geotextile. Calcium carbonate (CaCO3) in liquids affects the discharge capacity of drains, and this capacity decreases with increasing confining pressure. NWNP geotextile is the most vulnerable to confining pressure as it lacks a core. The reason behind the significant decrease in the discharge capacity of NWNP geotextile is clarified based on the SEM analysis. EDS analysis investigated the major composition of the clogged materials, revealing that the primary components are carbon, oxygen, and calcium. Advanced imaging techniques can be utilized to gain a deeper understanding of the underlying mechanisms. The results of this study can aid in the design and maintenance of engineering systems, especially tunnel drainage systems, that incorporate geosynthetic materials. © Korean Society of Civil Engineers 2024.
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