微动B超技术在堤坝隐患检测中的应用

    Application of the microtremor B-mode ultrasound technology in detecting the hidden hazards of dams

    • 摘要: 为了快速、有效探查堤坝隐患,本文提出了基于线性台阵的微动B超技术。大多数堤坝(土坝)兼顾公路功能,车辆运行产生的震动信号沿堤坝方向传播,基于此,沿着堤坝布设线性台阵,震动传播方向与接收方向一致,为堤坝隐患检测提供了丰富的震源。研究表明,在线性台阵的基础上利用多道采集技术,采集一次可获得多个勘探点数据,提高了野外数据采集效率,避免了震源差异性的影响,提高了横向分辨率以及勘探成果的准确性。将该技术应用于江西九江某堤坝汛前的安全检测,查明该区段存在3处低速隐患,推测为坝基软弱层隐患和堤身介质疏松隐患。实践证明:该技术有效弥补了以往微动勘探效率低、横向分辨率低的不足;并可进行每1 m间距或0.5 m间距的速度扫描,提高了横向分辨率,为堤坝安全治理提供高效、精确指导。

       

      Abstract: To quickly and effectively detect the hidden hazards of dams,this study proposed the microtremor B-mode ultrasound technology based on linear arrays.Most of the (earth) dams also act as highways,and the vibration signals generated from running vehicles propagate along dams.Therefore,this study proposed deploying linear arrays along the dams,with the vibration propagation direction consistent with the signal receiving direction.In this way,abundant vibration sources can be provided for detecting hidden hazards of the dams.The results of this study show that the data on multiple exploration points can be simultaneously acquired using the multi-channel acquisition technique based on linear arrays,thus improving the efficiency of field data acquisition.Moreover,the influence of source differences can be avoided,and the lateral resolution and the accuracy of exploration results can be improved.The technology proposed in this study was applied to the pre-flood safety inspection of a dam in Jiujiang,Jiangxi Province.Three low-velocity hidden hazards were identified in this dam and were presumed to be the weak layers of the dam foundation and the loose media of the dam body.Practices have proved that this technology effectively counteracts the deficiencies (i.e.,low efficiency and lateral resolution) of the previous microtremor exploration.Moreover,this technology allows scanning at a spacing of 1 m or 0.5 m,thus improving the lateral resolution.This study will provide efficient and accurate guidance for dam safety management.

       

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