Phéron Xavier, Girard Sylvain, Boukenter Aziz, Brichard Benoit, Delepine-Lesoille Sylvie, Bertrand Johan, Ouerdane Youcef
Andra, 1-7 rue Jean Monnet, 92298 Chatenay-Malabry, France.
Opt Express. 2012 Nov 19;20(24):26978-85. doi: 10.1364/OE.20.026978.
The use of distributed strain and temperature in optical fiber sensors based on Brillouin scattering for the monitoring of nuclear waste repository requires investigation of their performance changes under irradiation. For this purpose, we irradiated various fiber types at high gamma doses which represented the harsh environment constraints associated with the considered application. Radiation leads to two phenomena impacting the Brillouin scattering: 1) decreasing in the fiber linear transmission through the radiation-induced attenuation (RIA) phenomenon which impacts distance range and 2) modifying the Brillouin scattering properties, both intrinsic frequency position of Brillouin loss and its dependence on strain and temperature. We then examined the dose dependence of these radiation-induced changes in the 1 to 10 MGy dose range, showing that the responses strongly depend on the fiber composition. We characterized the radiation effects on strain and temperature coefficients, dependencies of the Brillouin frequency, providing evidence for a strong robustness of these intrinsic properties against radiations. From our results, Fluorine-doped fibers appear to be very promising candidates for temperature and strain sensing through Brillouin-based sensors in high gamma-ray dose radiative environments.
基于布里渊散射的光纤传感器中分布式应变和温度的应用,用于监测核废料储存库,需要研究它们在辐照下的性能变化。为此,我们以高伽马剂量辐照了各种光纤类型,这些剂量代表了与所考虑应用相关的恶劣环境限制。辐射会导致两种影响布里渊散射的现象:1)由于辐射诱导衰减(RIA)现象导致光纤线性传输下降,这会影响距离范围;2)改变布里渊散射特性,包括布里渊损耗的固有频率位置及其对应变和温度的依赖性。然后,我们研究了在1至10兆戈瑞剂量范围内这些辐射诱导变化的剂量依赖性,结果表明响应强烈依赖于光纤成分。我们表征了辐射对应变和温度系数、布里渊频率依赖性的影响,为这些固有特性对辐射的强鲁棒性提供了证据。根据我们的结果,氟掺杂光纤似乎是在高伽马射线剂量辐射环境中通过基于布里渊的传感器进行温度和应变传感的非常有前途的候选者。