研究目的
Investigating the feasibility of monitoring drying-induced soil shrinkage and desiccation cracking using BOTDR.
研究成果
BOTDR is capable of measuring the distributed strain in optical fibers, making it applicable for the monitoring of drying-induced soil shrinkage and desiccation cracking process in soils. The selection of optical fiber plays a key role in applying the distributed optical fiber sensing technology in the monitoring of drying-induced soil shrinkage and desiccation cracking. Optical fibers covered with TPEE jacket or nylon jacket are both applicable for soil strain monitoring, with the former one more sensitive to water content variations.
研究不足
The optical fiber with acrylate coating is not suitable because of its fragility and the poor interfacial coupling with the soil. Both low water content and high surface crack ratio have a negative influence on the accuracy of the monitoring results, primarily caused by the formation of desiccation cracks and the resulting decoupling between the optical fiber and the soil sample.
1:Experimental Design and Method Selection:
A physical model test was conducted to investigate the feasibility of monitoring drying-induced soil shrinkage and desiccation cracking using BOTDR. Three optical fibers with different surface protections were tested and compared.
2:Sample Selection and Data Sources:
Xiashu soil taken from Nanjing, Jiangsu Province, China, was used. Slurry soil sample was prepared to ensure homogeneity.
3:List of Experimental Equipment and Materials:
An acrylic mold, three optical fibers with different protections (TPEE jacket, nylon jacket, and acrylate coating), BOTDR instrument (AQ8603, Ando Company), thermocouple, digital camera.
4:Experimental Procedures and Operational Workflow:
The soil sample was subjected to continuous drying. Three optical fibers were installed inside the soil body along the longitudinal direction to measure drying-induced soil strains. The evolution of measured strain with decreasing water content as well as the propagation of desiccation cracks during the drying process was analyzed.
5:Data Analysis Methods:
The evolution of surface crack ratio and the number of crack segments with the elapsed drying time was quantitatively analyzed using Crack Image Analysis System (CIAS).
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