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A new flexible FBG sensing beam for measuring dynamic lateral displacements of soil in a shaking table test

机译:一种新的挠性FBG传感梁,用于在振动台试验中测量土壤的动态横向位移

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摘要

In this paper, the design, validation, and application of a new flexible fiber Bragg grating (FBG) sensing beam are presented for effectively measuring dynamic lateral displacements inside soil mass in a shaking table test. The special flexible FBG sensing beam has been fabricated by employing a series of FBG sensors along with design of temperature compensation. Based on this design, equations of converting strains to lateral displacements are derived by using both differential and integral methods. Subsequently, the effectiveness of the FBG sensing beam has been verified in a shaking table test with non-contact laser displacement sensors (LDSs). The dynamic lateral displacements at different depths of the soil mass in the shaking table box throughout time history are calculated by differential and integral methods and compared with the results of LDSs. The comparison validates the measurement accuracy of the FBG sensing beam. Additionally, the Fast Fourier Transform (FFT) analysis result demonstrates that frequency measured by the sensing beam fits well with the results of traditional accelerometers and LDSs. Therefore, it can be concluded that the flexible FBG sensing beam is compatible with the stiffness of the soil and is capable of measuring dynamic lateral displacements with good accuracy in a shaking table test.
机译:本文提出了一种新型的柔性光纤布拉格光栅(FBG)传感光束的设计,验证和应用,以有效地测量振动台试验中土壤内部的动态横向位移。通过使用一系列FBG传感器以及温度补偿设计来制造特殊的柔性FBG感应光束。基于此设计,通过使用微分和积分方法,导出了将应变转换为横向位移的方程。随后,在非接触式激光位移传感器(LDS)的振动台测试中验证了FBG感应光束的有效性。通过微分和积分方法计算了整个时间历程中振动台箱内不同质量土体深度处的动态横向位移,并将其与LDS的结果进行了比较。比较结果验证了FBG感应光束的测量精度。此外,快速傅立叶变换(FFT)分析结果表明,传感光束测得的频率与传统加速度计和LDS的结果非常吻合。因此,可以得出结论,柔性FBG传感梁与土壤的刚度兼容,并且能够在振动台测试中以良好的精度测量动态横向位移。

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