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River Ecological Restoration and Groundwater Artificial Recharge
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Three of the eleven papers focused on groundwater recharge and its impacts on the groundwater regime, in which recharge was caused by riverbed leakage from river ecological restoration (artificial water replenishment). The issues of the hydrogeological parameters involved (such as the influence radius) were also reconsidered. Six papers focused on the impact of river ecological replenishment and other human activities on river and watershed ecology, and on groundwater quality and use function. The issues of ecological security at the watershed scale and deterioration of groundwater quality were of particular concern. Two papers focused on water resources carrying capacity and water resources reallocation at the regional scale, in the context of the fact that ecological water demand has been a significant topic of concern. The use of unconventional water resources such as brackish water has been emphasized in the research in this issue.
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Keywords
- alga control
- artificial ecological water supplement
- brackish water
- Distribution
- DPSIR model framework
- drinking suitability
- Dupuit
- ecological restoration
- Ecopath model
- Environmental management
- factor analysis
- fluorine
- Formation
- fuzzy comprehensive evaluation model
- general algebraic modeling system
- Groundwater
- groundwater flow system
- groundwater hydrochemistry
- groundwater numerical simulation
- groundwater quality
- groundwater recharge resources amount evaluation
- Health risk assessment
- History of engineering & technology
- human health risk
- hydrogeochemistry
- influence radius
- inverse modeling
- ionic ratios
- irrigation suitability
- Lianshi Lake
- MODFLOW
- n/a
- Numerical Simulation
- Songnen Plain
- Sustainable development
- Technology, engineering, agriculture
- Technology: general issues
- Thiem
- typical biological chain
- uncertainty analysis
- water allocation
- water diversion project
- water resources carrying capacity
- watershed ecological security assessment
- weight sensitivity analysis
- Yangtze River
- Yongding River