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Experimental analysis of the impact of sluice regulation on water quality in the highly polluted Huai River Basin, China

机译:淮河流域高污染水闸调控对水质影响的试验分析

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摘要

Impact assessment of sluice regulation on water quality is one of the crucial tasks in the present river management. However, research difficulties remain because of insufficient in situ data and numerous influencing factors in aquatic environments. The Huaidian Sluice, the main control sluice of the Shaying River, China, was selected for this study. Three field experimental programs were designed and carried out to analyze spatial and temporal variations in water quality parameters under various sluice regulation conditions and to explore the impacts of regulation mechanisms on water quality. Monitoring data were used to simulate water quality under different scenarios by the water quality analysis simulation program (WASP). Results demonstrate that the influences of sluice regulation on permanganate index (CODMn) and ammonia nitrogen (NH4-N) concentrations (indicators of water quality) were complex and nonlinear and presented different trends of increase or decrease from different regulation modes. Gate openings of different widths and different flow rates affected CODMn and NH4-N concentrations differently. Monitoring results and numerical simulation results indicate that the sluice opening should be small. Flow discharge through the sluice should be greater than 10 m(3) s and less than 60 m(3) s to maintain low CODMn concentrations, and discharge should be low (e. g., 14 m(3) s) to maintain low NH4-N concentrations. This research provides an experimental basis for further research on the construction of water quality models and for the development of reasonable regulations on water quality and quantity.
机译:水闸调节对水质的影响评估是当前河流管理的关键任务之一。然而,由于缺乏现场数据和水生环境中的众多影响因素,研究困难依然存在。本研究选择了中国沙ying河的主要控制闸门淮门闸。设计并实施了三个野外实验程序,以分析各种水闸调节条件下水质参数的时空变化,并探讨调节机制对水质的影响。水质分析模拟程序(WASP)将监测数据用于模拟不同情况下的水质。结果表明,水闸调节对高锰酸盐指数(CODMn)和氨氮(NH4-N)浓度(水质指标)的影响是复杂和非线性的,并且在不同的调节方式下呈现出不同的上升或下降趋势。不同宽度和流速的门开口对CODMn和NH4-N浓度的影响不同。监测结果和数值模拟结果表明,水闸口应较小。通过水闸的流量排放应大于10 m(3)s,小于60 m(3)s,以保持低的CODMn浓度,流量应较低(例如,14 m(3)s),以保持较低的NH4- N浓度。该研究为进一步研究水质模型和制定合理的水质和水量规定提供了实验依据。

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