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Li Ning, Guo Xiujun, Ma Qiangwei, Zhang Yufeng. The research of electrical resistivity system's application effect simulation in coastal submarine confined groundwater discharge[J]. Haiyang Xuebao, 2019, 41(5): 128-137. doi: 10.3969/j.issn.0253-4193.2019.05.012
Citation: Li Ning, Guo Xiujun, Ma Qiangwei, Zhang Yufeng. The research of electrical resistivity system's application effect simulation in coastal submarine confined groundwater discharge[J]. Haiyang Xuebao, 2019, 41(5): 128-137. doi: 10.3969/j.issn.0253-4193.2019.05.012

The research of electrical resistivity system's application effect simulation in coastal submarine confined groundwater discharge

doi: 10.3969/j.issn.0253-4193.2019.05.012
  • Received Date: 2018-06-26
  • Confined groundwater discharge is a major form of submarine groundwater discharge. Because this process occurs in the bottom of seawater, detection is more difficult. To explore the detection capabilities of the marine multi-electrode resistivity method for this process, according to the typical geological model of the confined aquifer in the seabed, the geoelectric models with different drainage stages were constructed. Simulate sea surface and sea floor detection conditions, and compare the resulting resistivity profiles. The results of the study indicate that the water surface multi-electrode resistivity detection profile can clearly depict the migration and mixing process of freshwater excreted into the sea in seawater. However, the anomalous profile and resolution of the profile are affected by the detection device, electrode pole pitch, and seawater depth. Seabed surface detection results are more capable of reflecting the exchange process of brackish water in sediments, and the seawater intrusions in sediments can be well reflected.
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