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Forward Modelling and GPR Imaging in Leakage Detection and Grouting Evaluation in Tunnel Lining

机译:隧道衬砌渗漏检测与注浆评价中的正演建模与GPR成像

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摘要

Tunnels in the operation period are faced with different types of diseases, such as lining fracture, lining containing voids and lining leakage. In this paper, the common tunnel lining diseases are classified and ground-penetrating radar (GPR) is adopted to detect the tunnel lining diseases rapidly and nondestructively. The finite-difference time-domain (FDTD) method is used to carry out numerical experiments on GPR detection forward modelling and backward projection imaging. An interpretation criterion of GPR detection was established on typical lining diseases. Based on the dielectric differences between before and after grouting of tunnel lining, GPR is introduced into the evaluation of grouting on leakage in tunnel lining, and the numerical simulation of grouting effect is carried out. It can be concluded that GPR imaging can well-identify the dielectric changes before and after grouting and evaluate the grouting reinforcement effect more intuitively. Finally, this method was applied to a practical case in Kaiyuan tunnel, China. This paper provides an alternative way to detect tunnel lining leakage in operation period and a reference for the evaluation of structural defects reinforcement in underground engineering.
机译:运营期的隧道面临着衬砌断裂,衬砌含有空隙,衬砌渗漏等多种疾病。本文对常见的隧道衬砌病进行分类,并采用探地雷达(GPR)快速,无损地检测隧道衬砌病。利用时域有限差分法(FDTD)对GPR检测的正向建模和反向投影成像进行了数值实验。建立了针对典型内衬疾病的GPR检测的解释标准。基于隧道衬砌灌浆前后的介电差异,将GPR引入到隧道衬砌渗漏评价中,并对灌浆效果进行了数值模拟。可以得出结论,GPR成像可以很好地识别灌浆前后的介电变化,并更直观地评估灌浆加固效果。最后,将该方法应用于中国开元隧道的实际案例。本文为检测运营期隧道衬砌渗漏提供了一种替代方法,为地下工程结构缺陷加固的评估提供了参考。

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