利用探地雷达CMP测量技术对盾构隧道衬砌后充填注浆层厚度进行了精确估算

Hai Liu, Xiongyao Xie, Motoyuki Sato
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引用次数: 16

摘要

盾构隧道混凝土衬砌后充填注浆层的分布对其稳定性评价具有重要意义。提出了利用探地雷达(GPR)共同中点法(Common midpoint, CMP)估算充填注浆层介电常数和厚度的方法。我们开发了一个CMP测量系统,设计了两个领结天线。2012年1月,在中国上海的两条盾构隧道进行了现场试验。一个是正在运营的长江隧道,另一个是正在建设的长江公路隧道。在每个隧道中采集两个数据集。采用频率波数滤波抑制相干杂波,增强双曲反射信号。提出了一种新的包络速度谱分析算法,用于准确估计经处理的CMP剖面的介电常数和注浆层厚度。在施工和施工过程中,可以对隧道的注浆层进行清晰的估算。长江隧道研究的两个管段后注浆层厚度估算值分别为16 cm和17 cm,略小于设计厚度20cm。此外,长江路隧道某衬砌后注浆层内还发现了空穴。该技术为隧道安全评价、降低地面沉降风险提供了重要信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accurate thickness estimation of a backfill grouting layer behind shield tunnel lining by CMP measurement using GPR
The distribution of a backfill grouting layer behind concrete lining of a shield tunnel is important for evaluation of its stability. In this paper, we proposed to use Common Mid-Point (CMP) method by Ground Penetrating Radar (GPR) to estimate the dielectric permittivity and thickness of the backfill grouting layer. We developed a CMP measurement system with two designed bowtie antennas. Field experiments were carried out in two shield tunnels in Shanghai, China in January 2012. One is the Yangzi River tunnel under operation and the other is the Changjiang Road tunnel under construction. Two datasets were acquired in each tunnel. Frequency wavenumber (FK) filter was applied to suppress the coherent clutter and enhance the hyperbolic reflection signal. A new algorithm of envelope velocity spectrum analysis was proposed for accurate estimation of dielectric permittivity and thickness of the grouting layer from processed CMP profiles. Both the grouting layers behind the tunnel under operation and that under construction can be clearly estimated. The thickness of grouting layer behind the investigated two segments in Yangzi River tunnel were respectively estimated to be 16 cm and 17 cm, a little less than the designed thickness of 20cm. In addition, air void was discovered inside the grouting layer behind one of the lining in Changjiang Road tunnel. This technique provides important information for evaluation of the safety of a tunnel, mitigation of the risk of ground settlement.
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