Embedded capacitance sensor arrays for Structural Health Monitoring (SHM) of piping is explored. Using a capacitive electrode layer system embedded within Fiber Reinforced Polymer (FRP) layers, to detect potential damage and loading conditions. The sensors are comprised of an electrode array, and allow changes in system capacitance to be monitored. Combined with baseline data points, subsequent measurements can provide indication of applied force changes within composite patched or composite reinforced piping, allowing for repair or reinforcement health status monitoring. Unlike traditional sensors which only measure a single point, the proposed approach incorporates an electrode array technique, while capacitive sensing affords the ability to detect minuscule changes in force on the whole pipe surface. Thus, providing detection and monitoring capabilities beyond those currently employed by industry such as optical fiber or strain gauge.
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ASME 2017 Pressure Vessels and Piping Conference
July 16–20, 2017
Waikoloa, Hawaii, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
978-0-7918-5798-4
PROCEEDINGS PAPER
Embedded Capacitance Sensor Array for Structural Health Monitoring of Pipeline Systems
Jarod Weber,
Jarod Weber
Georgia Institute of Technology, Atlanta, GA
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Jianfeng Shi,
Jianfeng Shi
Georgia Institute of Technology, Atlanta, GA
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Chuck Zhang
Chuck Zhang
Georgia Institute of Technology, Atlanta, GA
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Jarod Weber
Georgia Institute of Technology, Atlanta, GA
Jianfeng Shi
Georgia Institute of Technology, Atlanta, GA
Chuck Zhang
Georgia Institute of Technology, Atlanta, GA
Paper No:
PVP2017-65473, V005T11A011; 11 pages
Published Online:
October 26, 2017
Citation
Weber, J, Shi, J, & Zhang, C. "Embedded Capacitance Sensor Array for Structural Health Monitoring of Pipeline Systems." Proceedings of the ASME 2017 Pressure Vessels and Piping Conference. Volume 5: High-Pressure Technology; ASME Nondestructive Evaluation, Diagnosis and Prognosis Division (NDPD); SPC Track for Senate. Waikoloa, Hawaii, USA. July 16–20, 2017. V005T11A011. ASME. https://doi.org/10.1115/PVP2017-65473
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