4.7 Article

How to comprehensively evaluate river discharge under the influence of a dam

Journal

ECOLOGICAL INFORMATICS
Volume 69, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.ecoinf.2022.101637

Keywords

Dam; Hydrological regime; Hydrological time series; Hydrological periodicity; Hydrological frequency; Hydrological parameters

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Funding

  1. Open Fund Research at the State Key Laboratory of Hydraulics and Mountain River Engineering, China [SKHL2002]
  2. Yunnan Province Science and Technology Department [2019BC002]

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In this study, a comprehensive method is proposed to analyze the hydrological regime changes in a river impacted by a dam through the evaluation of hydrological periodicity, hydrological frequency, and hydrological parameters. The results demonstrate that dam construction can alter the multiyear periodicity of the flow and decrease peak flow, impacting downstream spawning of fish. The indicators of hydrologic alteration and environmental flow component parameters can complement each other in evaluating hydrological regime changes.
The dams in the upper reaches of the Yangtze River are highly concentrated. Dam construction can effectively solve water shortage problems; however, the natural hydrological regimes of rivers have changed to varying degrees under the influence of water conservancy projects. In this study, a comprehensive method is proposed to analyze the hydrological regime changes in a river impacted by a dam through the evaluation of hydrological periodicity, hydrological frequency and hydrological parameters. Hydrological periodicity is used to evaluate the time series from the vertical multiyear perspective, while hydrological frequency is used to evaluate the time series from the horizontal one-year perspective. The two parameters have complementary roles. The indicators of hydrologic alteration and environmental flow component parameters are used to analyze the changes in various hydrological factors affected by the dam. The results demonstrate that the construction of dams can change the multiyear periodicity of the flow and reduce the peak flow. As a result, downstream fish may be unable to sense the reduced floods and fail to spawn. The indicators of hydrologic alteration and environmental flow component parameters can complement each other and can be used to evaluate changes in a hydrological regime influenced by a dam. This comprehensive method can be used to analyze how the hydrological regime is affected by this dam.

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