Wang Yonghong, Liu Xueying, Zhang Mingyi, Sang Songkui, Bai Xiaoyu
Institute of civil engineering, Qingdao university of technology, Qingdao 266000, China.
Sensors (Basel). 2020 Mar 30;20(7):1934. doi: 10.3390/s20071934.
In order to examine the applicability of Fiber Bragg Grating (FBG) sensing technology in the static penetration of pipe piles, static penetration tests in clay were conducted using double-wall open and closed model pipe piles. The strain was measured using FBG sensors, and the plug height was measured using a cable displacement sensor. Using one open pile and two closed piles, the difference in pipe pile penetration was compared and analyzed. Based on FBG sensing technology and the strain data, the penetration characteristics of the pipe pile, such as axial force, lateral friction, and driving resistance were examined. Results showed that FBG sensing technology has superior testing performance for the pipe pile penetration process, can accurately reflect the strain time history of pipe piles, and can clearly reflect the penetration process of pipe piles with increasing penetration depth. In addition, the variation law of the characteristics of the jacked pile pile-soil interface was obtained. This test has significance for model tests and the engineering design of pipe piles.
为了研究光纤布拉格光栅(FBG)传感技术在管桩静压沉桩中的适用性,采用双壁开口和闭口模型管桩在黏土中进行了静压沉桩试验。使用FBG传感器测量应变,使用电缆位移传感器测量桩塞高度。采用1根开口桩和2根闭口桩,对比分析了管桩沉桩的差异。基于FBG传感技术和应变数据,研究了管桩的轴向力、侧摩阻力和沉桩阻力等沉桩特性。结果表明,FBG传感技术在管桩沉桩过程中具有优异的测试性能,能够准确反映管桩的应变时程,且能清晰反映随着入土深度增加管桩的沉桩过程。此外,得到了静压桩桩土界面特性的变化规律。该试验对管桩的模型试验和工程设计具有重要意义。