Structural health monitoring using distributed fiber optic sensors

Structural Health Monitoring is important in preventing failure of structures which might lead to major catastrophes. Various methods of SHM are available and one such method is the distributed fiber optic sensing techniques based on Brillouin scattering. This method, which uses optical fiber as the...

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Main Author: Chong, Richard Hong Leong.
Other Authors: Yang Yaowen
Format: Final Year Project
Language:English
Published: 2010
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Online Access:http://hdl.handle.net/10356/40953
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-409532023-03-03T17:05:22Z Structural health monitoring using distributed fiber optic sensors Chong, Richard Hong Leong. Yang Yaowen School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering::Structures and design Structural Health Monitoring is important in preventing failure of structures which might lead to major catastrophes. Various methods of SHM are available and one such method is the distributed fiber optic sensing techniques based on Brillouin scattering. This method, which uses optical fiber as the sensor, is capable of capturing accurate information of a wide range of parameters such as temperature, strain, pressure, electrical voltage and even deformation in the in-service structure. Due to the bare optical fiber’s fragility, it is a challenge to install it directly in real life application without packaging, so reliable packaging technique for optical fiber is essential and critical to ensure reliable sensing in structures using BOTDR technology, especially in rough construction conditions or harsh environments. If BOTDR optic fiber sensing is chosen as the main monitoring system for the underground structure, the material of the optical fiber used as well as the packaging technique is extremely critical in order to withstand the rough underground condition. Selection of installation method is of great important as well, in order to achieve high reliability and accuracy in the monitoring results and data analysis. This project seeks to investigate the reliability and degree of accuracy of various optical fibers with different packaging method. Compressive tests with load increment are conducted on a steel specimen with strain gauges and optical fibers installed along its web. The second part of the project focuses on the micro model experiment which is used as a real life simulation of the possible installation at the Jurong underground cavern (JRC). It seeks to investigate the degree of accuracy in strain variation and displacement shape using this sensing technique as compared to the traditional method of strain gauges measurement. Bachelor of Engineering 2010-06-25T02:48:36Z 2010-06-25T02:48:36Z 2010 2010 Final Year Project (FYP) http://hdl.handle.net/10356/40953 en Nanyang Technological University 87 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Civil engineering::Structures and design
spellingShingle DRNTU::Engineering::Civil engineering::Structures and design
Chong, Richard Hong Leong.
Structural health monitoring using distributed fiber optic sensors
description Structural Health Monitoring is important in preventing failure of structures which might lead to major catastrophes. Various methods of SHM are available and one such method is the distributed fiber optic sensing techniques based on Brillouin scattering. This method, which uses optical fiber as the sensor, is capable of capturing accurate information of a wide range of parameters such as temperature, strain, pressure, electrical voltage and even deformation in the in-service structure. Due to the bare optical fiber’s fragility, it is a challenge to install it directly in real life application without packaging, so reliable packaging technique for optical fiber is essential and critical to ensure reliable sensing in structures using BOTDR technology, especially in rough construction conditions or harsh environments. If BOTDR optic fiber sensing is chosen as the main monitoring system for the underground structure, the material of the optical fiber used as well as the packaging technique is extremely critical in order to withstand the rough underground condition. Selection of installation method is of great important as well, in order to achieve high reliability and accuracy in the monitoring results and data analysis. This project seeks to investigate the reliability and degree of accuracy of various optical fibers with different packaging method. Compressive tests with load increment are conducted on a steel specimen with strain gauges and optical fibers installed along its web. The second part of the project focuses on the micro model experiment which is used as a real life simulation of the possible installation at the Jurong underground cavern (JRC). It seeks to investigate the degree of accuracy in strain variation and displacement shape using this sensing technique as compared to the traditional method of strain gauges measurement.
author2 Yang Yaowen
author_facet Yang Yaowen
Chong, Richard Hong Leong.
format Final Year Project
author Chong, Richard Hong Leong.
author_sort Chong, Richard Hong Leong.
title Structural health monitoring using distributed fiber optic sensors
title_short Structural health monitoring using distributed fiber optic sensors
title_full Structural health monitoring using distributed fiber optic sensors
title_fullStr Structural health monitoring using distributed fiber optic sensors
title_full_unstemmed Structural health monitoring using distributed fiber optic sensors
title_sort structural health monitoring using distributed fiber optic sensors
publishDate 2010
url http://hdl.handle.net/10356/40953
_version_ 1759853104852893696