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  4. Young’s Modulus-Independent Determination of Fibre Parameters for Rayleigh-Based Optical Frequency Domain Reflectometry from Cryogenic Temperatures up to 353 K
 
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May 9, 2023
Journal Article
Title

Young’s Modulus-Independent Determination of Fibre Parameters for Rayleigh-Based Optical Frequency Domain Reflectometry from Cryogenic Temperatures up to 353 K

Abstract
The magnetic spectrometer AMS-100, which includes a superconducting coil, is designed to measure cosmic rays and detect cosmic antimatter in space. This extreme environment requires a suitable sensing solution to monitor critical changes in the structure such as the beginning of a quench in the superconducting coil. Rayleigh-scattering-based distributed optical fibre sensors (DOFS) fulfil the high requirements for these extreme conditions but require precise calibration of the temperature and strain coefficients of the optical fibre. Therefore, the fibre-dependent strain and temperature coefficients 𝐾T and 𝐾𝜖 for the temperature range from 77 K to 353 K were investigated in this study. The fibre was integrated into an aluminium tensile test sample with well-calibrated strain gauges to determine the fibre’s 𝐾𝜖 independently of its Young’s modulus. Simulations were used to validate that the strain caused by changes in temperature or mechanical conditions was the same in the optical fibre as in the aluminium test sample. The results indicated a linear temperature dependence of 𝐾𝜖 and a non-linear temperature dependence of 𝐾T. With the parameters presented in this work, it was possible to accurately determine the strain or temperature of an aluminium structure over the entire temperature range from 77 K to 353 K using the DOFS.
Author(s)
Girmen, Caroline
Fraunhofer-Institut für Produktionstechnologie IPT  
Dittmar, Clemens
RWTH Aachen University  
Siedenburg, Thorsten
RWTH Aachen University  
Gastens, Markus
RWTH Aachen University  
Wlochal, Michael
RWTH Aachen University  
König, Niels  
Fraunhofer-Institut für Produktionstechnologie IPT  
Schröder, Kai-Uwe
RWTH Aachen University  
Schael, Stefan
RWTH Aachen University  
Schmitt, Robert H.  
Fraunhofer-Institut für Produktionstechnologie IPT  
Journal
Sensors. Online journal  
Project(s)
Monitoring of space structures using fiber-optic sensors under cryogenic conditions
Funder
RWTH Aachen University  
Open Access
DOI
10.24406/publica-1876
10.3390/s23104607
File(s)
Full text.pdf (21.81 MB)
Rights
CC BY 4.0: Creative Commons Attribution
Language
English
Fraunhofer-Institut für Produktionstechnologie IPT  
Keyword(s)
  • Optical fibre sensor

  • OFDR

  • Calibration

  • Strain

  • Cryogenic temperature

  • AMS-100

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