Simulation study on the impact of ecological water replenishment on reservoir water environment based on Mike21——Taking Baiguishan reservoir as an example
Xianqi Zhang , Bingsen Duan , Shaoyu He , Yaohui Lu
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引用次数: 11
Abstract
In recent years, ecological water replenishment has become the main means to improve the water environment of the reservoir. Considering the complexity of the water characteristics of the reservoir, it is very necessary to simulate the impact of water replenishment on the water environment. Based on the two-dimensional water environment mathematical model theory, the water environment model of Baiguishan Reservoir was constructed by Mike21. Under the conditions of 6 different ecological water replenishment scenarios, the evolution characteristics and improvement of the water environment of the reservoir were analyzed. Finally, the cloud model was used to comprehensively evaluate the results and compare them. Come up with the best ecological water replenishment plan. The results show that the strong convective diffusion phenomenon caused by the large flow of water replenishment makes the water quality show a cascade distribution, and the water quality improvement rate can reach up to 40.01%. Optimal; the water body with large flow replenishment has better fluidity and reoxygenation ability, which improves the self-purification ability of the water body. The comparison with the actual replenishment effect shows that the effect of large flow and short duration is better under the same replenishment amount. The quantitative analysis results of pollutants under different scenarios can provide a scientific basis for the construction of the South-to-North Water Diversion Project and the ecological restoration of the reservoir.
期刊介绍:
The ultimate aim of Ecological Indicators is to integrate the monitoring and assessment of ecological and environmental indicators with management practices. The journal provides a forum for the discussion of the applied scientific development and review of traditional indicator approaches as well as for theoretical, modelling and quantitative applications such as index development. Research into the following areas will be published.
• All aspects of ecological and environmental indicators and indices.
• New indicators, and new approaches and methods for indicator development, testing and use.
• Development and modelling of indices, e.g. application of indicator suites across multiple scales and resources.
• Analysis and research of resource, system- and scale-specific indicators.
• Methods for integration of social and other valuation metrics for the production of scientifically rigorous and politically-relevant assessments using indicator-based monitoring and assessment programs.
• How research indicators can be transformed into direct application for management purposes.
• Broader assessment objectives and methods, e.g. biodiversity, biological integrity, and sustainability, through the use of indicators.
• Resource-specific indicators such as landscape, agroecosystems, forests, wetlands, etc.