Published October 3, 2016
| Version v1
Thesis
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Distributed Optical Fiber Radiation and Temperature Sensing at High Energy Accelerators and Experiments
Contributors
Supervisor (2):
Description
The aim of this Thesis is to investigate the feasibility of a distributed optical fiber radiation sensing system to be used at high energy physics accelerators and experiments where complex mixed-field environments are present. In particular, after having characterized the response of a selection of radiation sensitive optical fibers to ionizing radiation coming from a 60Co source, the results of distributed optical fiber radiation measurements in a mixed-field environment are presented along with the method to actually estimate the dose variation. This study demonstrates that distributed optical fiber dosimetry in the above mentioned mixed-field radiation environment is feasible, allowing to detect dose variations of about 10-15 Gy with a 1 m spatial resolution. The proof of principle has fully succeeded and we can now tackle the challenge of an industrial installation taking into account that some optimizations need to be done both on the control unit of the system as well as on the choice of the sensing fiber. Raman-based optical fiber distributed temperature measurements in a mixed-field environment have also been successfully investigated and are presented in this Thesis work.
Files
CERN-THESIS-2015-361.pdf
Files
(35.4 MB)
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Additional details
Identifiers
- CDS
- 2221650
- CDS Report Number
- CERN-THESIS-2015-361
CERN
- Department
- EN - Engineering Department
- Programme
- CERN Doctoral Student Program