4.0 Article

Prediction and verification of earthquakes induced by the Xiluodu hydropower station reservoir

Journal

EARTHQUAKE SCIENCE
Volume 35, Issue 5, Pages 387-397

Publisher

KEAI PUBLISHING LTD
DOI: 10.1016/j.eqs.2022.10.006

Keywords

seismic activity; reservoir-induced earthquake; reservoir level; seismic hazard zones; seismic energy release

Funding

  1. China Three Gorges Construction Engineering Corporation
  2. National Key R&D Program of China
  3. [2017YFC0404901]

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This study analyzed and compared reservoir-induced earthquakes in China, specifically focusing on the Xiluodu hydropower station. The findings confirmed the validity of predictive models and provided valuable insights for studying the mechanisms and predicting the hazard zones of reservoir-induced seismicity.
Research has been conducted on reservoir-induced earthquakes in China since the Xinfengjiang reservoir-induced earthquakes in the 1960s. Regulations now require the risk of reservoir-induced earthquakes to be evaluated in the pre-research stage of all hydropower projects. Although nearly 40 cases of reservoir-induced earthquakes have been reported in China, analyses comparing the changes in seismic activity following reservoir impoundment with predictions are rare. In this study, we compared seismic activities observed in the reservoir area before and after the impoundment of the Xiluodu hydropower station in terms of the spatial distribution, frequency, and focal depths of the earthquakes, and clarified the correlation between their frequency/timing and reservoir level after impoundment. We then concluded that the seismic events in the head region were karst-type earthquakes, while those in the second segment of the reservoir were tectonic earthquakes. The spatial distribution of the earthquake epicenters and the seismic intensities validated some of the results for the reservoir-induced seismic risk assessment for the Xiluodu hydropower station, indicating that the proposed earthquake triggers and predictive models are reasonable. This study can provide a valuable reference for investigating the mechanism (s) of reservoir-induced earthquakes, revising reservoir-induced earthquake hazard assessment codes, and predicting the hazard zones of reservoir-induced seismicity under similar conditions.

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