Evaluation of a high spatial resolution temperature compensated distributed strain sensor using a temperature controlled strain rig
Evaluation of a high spatial resolution temperature compensated distributed strain sensor using a temperature controlled strain rig
We demonstrate a scheme which allows for temperature corrected distributed strain measurements under environments involving simultaneous application of strain and temperature, with enhanced spatial (5 cms), strain (66 µ.epsilon) and temperature resolutions (1.9°C). The technique utilizes the combination of frequency based BOCDA with Brillouin intensity measurements.
Belal, Mohammad
33550de9-0df1-4c90-bae6-3eb65c62778a
Newson, T.P.
6735857e-d947-45ec-8163-54ebb25daad7
Belal, Mohammad
33550de9-0df1-4c90-bae6-3eb65c62778a
Newson, T.P.
6735857e-d947-45ec-8163-54ebb25daad7
Belal, Mohammad and Newson, T.P.
(2011)
Evaluation of a high spatial resolution temperature compensated distributed strain sensor using a temperature controlled strain rig.
OFS 21: 21st International Conference on Optical Fiber Sensors, Ottawa, Canada.
15 - 19 May 2011.
Record type:
Conference or Workshop Item
(Paper)
Abstract
We demonstrate a scheme which allows for temperature corrected distributed strain measurements under environments involving simultaneous application of strain and temperature, with enhanced spatial (5 cms), strain (66 µ.epsilon) and temperature resolutions (1.9°C). The technique utilizes the combination of frequency based BOCDA with Brillouin intensity measurements.
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e-pub ahead of print date: 2011
Additional Information:
7753-366
Venue - Dates:
OFS 21: 21st International Conference on Optical Fiber Sensors, Ottawa, Canada, 2011-05-15 - 2011-05-19
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 341619
URI: http://eprints.soton.ac.uk/id/eprint/341619
PURE UUID: 97b96225-c81a-4d04-a7c3-f119ab993f5f
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Date deposited: 31 Jul 2012 14:04
Last modified: 15 Mar 2024 03:31
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