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Coastal water environment regulation and simulation based on tidal power control

机译:基于潮流控制的沿海水环境调控与仿真

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As the carrier of water resources, water environment and water ecology, river course is very important to human and ecological environment in coastal areas. The rapid economic development of coastal areas needs to take into account the improvement of regional water environment in order to achieve a higher level of development. The characteristics of coastal water environment are closely related to tidal fluctuation. It is an important direction for coastal water control to improve the water environment and restore the self-purification capacity of the river by guiding and draining the tidal power. In this paper, the YACHONG River Basin, which borders Macau and Zhuhai, is selected as the study area. The semi-exchange period and water exchange rate are taken as the main evaluation indexes. The water quantity and quality model is used to simulate the scenario model and analyze the effect of water diversion and drainage regulation in different tidal periods. The results show that, compared with the drainage dispatch during spring tide, the drainage dispatch during neap tide prolongs the water exchange time, and the effect of water exchange is obviously better than that during spring tide. The research results of this paper provide reference for water environmental regulation in coastal area.
机译:河道作为水资源,水环境和水生态的载体,对沿海地区人类和生态环境具有重要意义。沿海地区的快速经济发展需要考虑到区域水环境的改善,以实现更高的发展水平。沿海水环境的特征与潮汐波动密切相关。通过引导和排泄潮汐能来改善水环境和恢复河流的自净能力,是沿海水控制的重要方向。本文以与澳门和珠海接壤的亚冲流域为研究区域。以半交换期和换水率为主要评价指标。用水量和水质模型用于模拟情景模型,并分析不同潮汐时期的引水和排水调节效果。结果表明,与春潮时期的排水调度相比,小潮时期的排水调度延长了换水时间,换水效果明显优于春潮时期。本文研究结果为沿海地区水环境调控提供参考。

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