4–6 Sept 2024
University of Salerno, Fisciano Campus - Buiding E1
Europe/Rome timezone

Conference Secretariat

A ground-breaking distributed fiber-optic pressure sensor for geohydraulic applications

5 Sept 2024, 15:00
15m
Room G (University of Salerno, Fisciano Campus - Buiding E1)

Room G

University of Salerno, Fisciano Campus - Buiding E1

Description

Distributed fiber optic (DFO) technology has provided significant insight into various engineering problems by enabling high spatial resolution and accurate temperature and strain measurements. Recently, a novel distributed fiber-optic pressure sensor (DPS) has been developed at the University of Applied Sciences of Eastern Switzerland (OST), which may change the paradigm of monitoring geohydraulic structure monitoring. The key innovation of the sensor is its ability to measure hydrostatic pressure with high spatial resolution and over long distances.
This study provides a comprehensive characterization of this novel sensor for two different applications. In the first application the DPS was tested in a water column to measure the vertical hydraulic pressure. In the second application the sensor is tested in a laboratory-scale dike (1:4). The DPS was embedded directly into the earth structures, providing real-time monitoring of pore pressure variations during saturation. For both applications, the DPS measurements were compared with conventional pressure and piezometer sensors, demonstrating good agreement.
The results of these two applications illustrate the potential of the DPS to revolutionize geohydraulic monitoring and improve our understanding of dynamic processes in water-related structures. The implementation of this technology promises to improve the safety, predictability, and performance of critical infrastructure.

Primary authors

Alessio Höttges (OST/ETH Zurich, Switzerland) Carlo Rabaiotti (OST University of Applied Sciences of Eastern Switzerland, Switzerland) Massimo Facchini (fibrisTerre Systems, Switzerland)

Presentation materials

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