首页> 外文期刊>Journal of Hydrology >Artificial tide generation and its effects on the water environment in the backwater of Three Gorges Reservoir
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Artificial tide generation and its effects on the water environment in the backwater of Three Gorges Reservoir

机译:三峡水库回水中人工潮的产生及其对水环境的影响。

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Since the water impounding of the Three Gorges Reservoir (TGR) in 2003, the water stage in the backwater region increased from 65 m before water impounding to 145 m, and the velocity of the stream flow decreased significantly. The outflows of the tributaries that flow into TGR were also obstructed by the backwater. Stopping the stream flow prevented the pollutants from diffusing and transporting themselves into the water body, hence polluting the water in several tributaries. The authors proposed an artificial tide generation approach to solve this problem. The man-made flood peak in the downstream and the waves of the water stage in the upstream of the TGR can be produced by operating hydropower generators daily to deal with peak-and-bottom variations in the electricity demand. These waves will propagate upwards and form artificial tides in the backwater area. The water stage variation will intensify the flow exchange between the main stem and the tributaries as well as enhance the diffusion of pollutants, which will subsequently decrease the eutrophication of the water body in the outlet of branches as well as relieve the algal bloom problem in the region. The daily operations in the reservoir were simulated and tested by using the proposed hydrodynamic model of TGR. The hydropower operation for the peak load of electricity demand will produce artificial tides in the backwater area of TGR as well as increase the water stage variation from 0.30 m to 0.50 m within a day. This periodic fluctuation of water stage waves will intensify the water exchange between the main reach of Changjiang (Yangtze River) and its tributaries with an additional inflow or outflow of up to 300-500 m(3)/s, which is equivalent to the average discharge of these tributaries during the summer. The artificial tide generation can enhance the internal exchange of backwater as well as improve the water environment condition in the backwater area. This operation approach provides a new technology for controlling the water quality in reservoirs as well as enhances environmental protection and resource utility. Crown Copyright (C) 2015 Published by Elsevier B.V. All rights reserved.
机译:自2003年三峡水库(TGR)蓄水以来,回水区的水位从蓄水前的65 m增加到145 m,水流速度明显降低。流入三峡集团的支流流出也被死水阻塞。停止水流阻止了污染物扩散和转移到水体中,从而污染了多个支流中的水。作者提出了一种人工潮汐产生方法来解决此问题。 TGR下游的人为洪水高峰和TGR上游的水位波浪可以通过每天运行水力发电机来处理电力需求的上下波动而产生。这些波将向上传播并在回水区形成人工潮汐。水位的变化将加强主干与支流之间的流动交换,并增强污染物的扩散,这将随后减少分支出口水体的富营养化,并缓解海藻泛滥的问题。地区。利用提出的TGR流体动力学模型对水库的日常运行进行了模拟和测试。为满足用电高峰负荷而进行的水力发电将在三峡集团的死水地区产生人工潮汐,并且一天之内水位变化将从0.30 m增加到0.50 m。水位波的这种周期性波动将加剧长江(长江)主要支流及其支流之间的水交换,额外的流入或流出速度高达300-500 m(3)/ s,这相当于平均水平在夏季排出这些支流。人工潮汐的产生可以增强回水的内部交换,并改善回水地区的水环境条件。这种操作方法为控制水库水质提供了新技术,并增强了环境保护和资源利用。官方版权(C)2015,Elsevier B.V.保留所有权利。

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