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SP Monitoring at a Sea Dike

机译:海堤上的SP监视

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The self-potential (SP) method is widely used in seepage evaluation hydrological studies to monitor the integrity of infrastructure such as dams, sea dikes, and other types of flood control devices because the electric signals that are measured are directly related to seepage rate. At leaking areas along sea dikes, large SP anomalies can be generated by the rising and falling of tides. Unfortunately, SP data are often contaminated with several types of noise, such as that from drifting electrodes, telluric disturbances, and external electrical noise. Furthermore, SP signals can have high levels of spatial variability due to heterogeneity in lateral resistivity at the locations where the electrodes are installed. Because of these issues, it is very difficult to correlate the measured SP voltages with the streaming potentials associated with groundwater flows at particular points in time. To alleviate these problems, we developed a simple but effective interpretation method for SP monitoring data that involves subtracting consecutive SP voltages collected at different time points from a particular monitoring station. This subtracting procedure is able to effectively reduce spurious SP anomalies caused by electrode drift, change in resistivity, and other types of interference. Therefore, any changes observed in SP measurements over certain time frames were interpreted as resulting primarily from temporal changes in seepage flow. To demonstrate the performance of this method, we analysed SP monitoring data measured at a sea dike located on the southern coast of Korea. Our results confirmed that the SP interpretation method is able to explain changes in streaming potentials depending on the tide change over time and to detect the horizontal location of anomalous seepage zones along the sea dike.
机译:自电位(SP)方法被广泛用于渗流评估水文研究中,以监视基础设施的完整性,例如大坝,海堤和其他类型的防洪设备,因为所测量的电信号与渗流率直接相关。在沿海堤泄漏的区域,潮汐的上升和下降会产生较大的SP异常。不幸的是,SP数据经常被几种类型的噪声污染,例如来自电极漂移,碲干扰和外部电噪声的噪声。此外,由于在电极安装位置处的横向电阻率的异质性,SP信号可能具有高水平的空间可变性。由于这些问题,很难在特定的时间点将测得的SP电压与与地下水流相关的流势关联起来。为了缓解这些问题,我们为SP监视数据开发了一种简单而有效的解释方法,该方法包括从特定监视站减去在不同时间点收集的连续SP电压。这种减法过程能够有效地减少由电极漂移,电阻率变化和其他类型的干扰引起的寄生SP异常。因此,在特定时间范围内在SP测量中观察到的任何变化均被解释为主要是由于渗流的时间变化所致。为了证明这种方法的性能,我们分析了在韩国南部海岸的一个海堤上测得的SP监测数据。我们的结果证实,SP解释方法能够根据潮汐随时间的变化解释流势的变化,并能够检测沿海堤的异常渗漏带的水平位置。

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