A Non-Destructive Monitoring System for QA/QC of Cement-Bentonite Cut-off Walls
- Organization:
- Deep Foundations Institute
- Pages:
- 9
- File Size:
- 2371 KB
- Publication Date:
- Oct 7, 2024
Abstract
Conventional Quality Assurance and Quality Control (QA/QC) methods for Cement Bentonite (CB) walls rely on destructive coring, which is carried out at specific curing times like 28 days or 91 days. The key parameters determined are strength and permeability. Hence, the conventional methods will not be able to give any indication on strength and permeability until later stage of curing. This delayed QA/QC hinders quick remediation when unsatisfactory strength or permeability values are obtained. To address this limitation, this study utilizes non-destructive resistivity monitoring system to provide indications of the parameters at early days of curing. By continuously assessing resistivity of CB at various depths, this method aims to provide predictive indicators of long-term strength and permeability, enabling proactive interventions before the conventional 91-day coring, if needed.
A comprehensive case study is presented, which includes scaled model in a laboratory, as well as a actual measurement in the field. The large-scale laboratory setup models the actual thickness of the CB wall in the field (0.8 m). Specially designed and fabricated resistivity devices are installed in the laboratory setup, and two sections in the field CB wall. Findings show that in terms of resistivity development with curing time, the field resistivity continuous monitoring data displays a similar trend to those resistivity measurements conducted in the laboratory-scaled model. Cored samples were also taken in the laboratory and field at specific curing time of 91 day. The resistivity correlated well with the cored samples’ strength and permeability values.
Citation
APA: (2024) A Non-Destructive Monitoring System for QA/QC of Cement-Bentonite Cut-off Walls
MLA: A Non-Destructive Monitoring System for QA/QC of Cement-Bentonite Cut-off Walls. Deep Foundations Institute, 2024.