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The pore water pressure sensor based on Sagnac interferometer with polarization-maintaining photonic crystal fiber for the geotechnical engineering

机译:基于Sagnac干涉仪的偏振保持光子晶体光纤孔隙水压力传感器,用于岩土工程

摘要

The pore water pressure sensors with the six-hole suspended-core polarization-maintaining photonic crystal fiber (SC-PM-PCF) and commercial polarization-maintaining photonic crystal fiber (PM-PCF) are designed based Sagnac interferometer and calibrated in the laboratory. According to the theoretical analysis and calibration results, the transmission spectrum is very sensitive to the pore water pressure. It is found that the wavelength of the spectrum has a good linear relationship with variances of the surrounding pore water pressure, and the coefficient of wavelength-pressure of the commercial PM-PCF is 304.41 kPa/nm with the length of 35 cm as the sensing element while the coefficient of the SC-PM-PCF is 254.75 kPa/nm with the length of 100 cm. Finally, the two PM-PCF sensors are applied and compared with the conventional Pore water Pressure Transducers (PPTs) in a physical model test. It is found that measurements of the PM-PCF sensors are in good agreement with the results measured by the conventional PPTs.
机译:基于Sagnac干涉仪设计了具有六孔悬浮核偏振光子晶体光纤(SC-PM-PCF)和商用偏振保持光子晶体光纤(PM-PCF)的孔隙水压力传感器,并在实验室进行了校准。根据理论分析和定标结果,透射光谱对孔隙水压力非常敏感。结果表明,光谱波长与周围孔隙水压力的变化具有良好的线性关系,商用PM-PCF的波长-压力系数为304.41 kPa / nm,感测长度为35 cm。 SC-PM-PCF的系数为254.75 kPa / nm,长度为100 cm。最后,在物理模型测试中,应用了两个PM-PCF传感器并将其与常规的孔隙水压力传感器(PPT)进行了比较。发现PM-PCF传感器的测量结果与常规PPT的测量结果非常吻合。

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