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突发性水污染事故与水库应急运行:丹江口水库的影响分析

Sudden water pollution accidents and reservoir emergency operations: impact analysis at Danjiangkou Reservoir.

作者信息

Zheng Hezhen, Lei Xiaohui, Shang Yizi, Duan Yang, Kong Lingzhong, Jiang Yunzhong, Wang Hao

机构信息

a Institute of Municipal Engineering, College of Civil Engineering and Architecture , Zhejiang University , Hangzhou , People's Republic of China.

b State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin , China Institute of Water Resources and Hydropower Research , Beijing , People's Republic of China.

出版信息

Environ Technol. 2018 Mar;39(6):787-803. doi: 10.1080/09593330.2017.1311945. Epub 2017 May 3.

Abstract

Danjiangkou Reservoir is the source reservoir of the Middle Route of the South-to-North Water Diversion Project (MRP). Any sudden water pollution accident in the reservoir would threaten the water supply of the MRP. We established a 3-D hydrodynamic and water quality model for the Danjiangkou Reservoir, and proposed scientific suggestions on the prevention and emergency management for sudden water pollution accidents based on simulated results. Simulations were performed on 20 hypothetical pollutant discharge locations and 3 assumed amounts, in order to model the effect of pollutant spreading under different reservoir operation types. The results showed that both the location and mass of pollution affected water quality; however, different reservoir operation types had little effect. Five joint regulation scenarios, which altered the hydrodynamic processes of water conveyance for the Danjiangkou and Taocha dams, were considered for controlling pollution dispersion. The results showed that the spread of a pollutant could be effectively controlled through the joint regulation of the two dams and that the collaborative operation of the Danjiangkou and Taocha dams is critical for ensuring the security of water quality along the MRP.

摘要

丹江口水库是南水北调中线工程的水源地。水库内任何突发水污染事故都将威胁到南水北调中线工程的供水安全。我们建立了丹江口水库三维水动力水质模型,并根据模拟结果,对突发水污染事故的预防及应急管理提出了科学建议。针对20个假设的污染物排放位置和3种假设的排放量进行了模拟,以模拟不同水库运行方式下污染物扩散的影响。结果表明,污染位置和污染量均对水质有影响,而不同水库运行方式影响较小。考虑了5种联合调度方案,这些方案改变了丹江口大坝和陶岔大坝输水的水动力过程,以控制污染扩散。结果表明,通过两座大坝的联合调度可有效控制污染物扩散,丹江口大坝和陶岔大坝的协同运行对保障南水北调中线工程沿线水质安全至关重要。

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