Construction Conception of a Water Quality Monitoring System for the Water Source Area of the South-to-North Water Diversion Middle Route Project in the New Era

QIN He, PAN Lu, PENG Xiao-ran, NI Xue-feng, HUANG Xuan-min

Journal of Changjiang River Scientific Research Institute ›› 2024, Vol. 41 ›› Issue (10) : 1-5.

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Journal of Changjiang River Scientific Research Institute ›› 2024, Vol. 41 ›› Issue (10) : 1-5. DOI: 10.11988/ckyyb.20240654

Construction Conception of a Water Quality Monitoring System for the Water Source Area of the South-to-North Water Diversion Middle Route Project in the New Era

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Abstract

Constructing a water quality safety guarantee system that aligns with national strategic water source zones constitutes an essential part of the operation and management of the South-to-North Water Diversion Middle Route Project in the new era. This paper proposes the establishment conception of four major systems—monitoring station network, water quality monitoring, risk prevention, and technological support—based on the new requirements and objectives for water quality monitoring in the Danjiangkou Reservoir and its upstream basin. We detail the fundamental concepts and elements of these systems. The four systems aim to ensure the sustainable northward flow of clean water by enhancing the water quality monitoring framework through comprehensive coverage, timely alerts, advanced intelligence, three-dimensional perception, focused monitoring, and scientific research.

Key words

Middle Route Project of South-to-North Water Diversion / Danjiangkou Reservoir / water quality monitoring system / water quality safety guarantee

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QIN He , PAN Lu , PENG Xiao-ran , et al . Construction Conception of a Water Quality Monitoring System for the Water Source Area of the South-to-North Water Diversion Middle Route Project in the New Era[J]. Journal of Yangtze River Scientific Research Institute. 2024, 41(10): 1-5 https://doi.org/10.11988/ckyyb.20240654

References

[1]
朱云. 以“节水优先、空间均衡、系统治理、两手发力” 治水思路为引领全力推动新阶段城乡供水高质量发展[J]. 水利发展研究, 2024, 24(4):19-23.
(ZHU Yun. Promoting High-quality Development of Urban and Rural Water Supply in the New Stage under the Guidance of Water Governance Idea[J]. Water Resources Development Research, 2024, 24(4):19-23. (in Chinese))
[2]
林莉, 李全宏, 曹慧群, 等. 数字孪生丹江口水质安全建设挑战与举措[J]. 中国水利, 2023(11): 32-36.
(LIN Li, LI Quan-hong, CAO Hui-qun, et al. Challenges and Measures for Digital Twin Danjiangkou Reservoir Water Quality Safety Construction[J]. China Water Resources, 2023(11): 32-36. (in Chinese))
[3]
王健. 南水北调中线水源工程水质监测保障工作研究[J]. 长江技术经济, 2022, 6(2): 6-10.
(WANG Jian. Research on the Monitoring and Guarantee Work of Water Quality in the Water Source Area of the Middle Route of the South-to-north Water Diversion Project for the First Time[J]. Technology and Economy of Changjiang, 2022, 6(2): 6-10. (in Chinese))
[4]
井柳新, 马乐宽, 续衍雪, 等. “十四五” 丹江口库区及上游生态环境保护思路研究[J]. 环境保护, 2021, 49(14): 59-62.
(JING Liu-xin, MA Le-kuan, XU Yan-xue, et al. Study on the Ecological Environment Protection of Danjiangkou Reservoir Area and Its Upper Reaches during the 14th Five-year Plan Period[J]. Environmental Protection, 2021, 49(14): 59-62. (in Chinese))
[5]
GB 3838—2002, 地表水环境质量标准[S]. 北京: 中国环境科学出版社, 2002.
(GB 3838—2002,Environmental Quality Standards for Surface Water[S]. Beijing: China Environmental Science Press, 2002. (in Chinese))
[6]
任金秋, 董付强, 洪兴骏, 等. 丹江口水库汛期优化调度实践及风险效益分析[J]. 人民长江, 2023, 54(12):15-23.
(REN Jin-qiu, DONG Fu-qiang, HONG Xing-jun, et al. Practice of Optimized Flood Control Operation and Risk-benefit Analysis for Danjiangkou Reservoir during Flood Season[J]. Yangtze River, 2023, 54(12):15-23. (in Chinese))
[7]
柯怡明, 孙学军, 孙元, 等. 2021年汉江秋汛异常水雨情特征及风险管理机制探讨[J]. 暴雨灾害, 2022, 41(5): 501-505.
(KE Yi-ming, SUN Xue-jun, SUN Yuan, et al. Discussion on the Characteristics and Risk Management Strategies of Abnormal Rainfall-flood Regime in the Hanjiang River Basin during the Autumn Flood Season of 2021[J]. Torrential Rain and Disasters, 2022, 41(5): 501-505. (in Chinese))
[8]
尹炜, 王超, 王立, 等. 丹江口水库总磷时空分布特征及其影响因素[J]. 人民长江, 2023, 54(1): 1-7, 10.
(YIN Wei, WANG Chao, WANG Li, et al. Spatial and Temporal Distribution Characteristics and Influencing Factors of Total Phosphorus in Danjiangkou Reservoir[J]. Yangtze River, 2023, 54(1):1- 7, 10. (in Chinese))
[9]
张乐群, 付昕, 白凤朋. 丹江口水库典型支流对水库总氮浓度的影响[J]. 人民长江, 2020, 51(7): 40-45.
(ZHANG Le-qun, FU Xin, BAI Feng-peng. Influence of Representative Input Tributaries on Total Nitrogen in Danjiangkou Reservoir[J]. Yangtze River, 2020, 51(7): 40-45. (in Chinese))
[10]
靖争, 秦赫, 林莉, 等. 数字孪生丹江口工程水质安全“四预”平台研发及应用[J]. 水利信息化, 2024(1):6-12.
(JING Zheng, QIN He, LIN Li, et al. Development and Application of Digital Twin Danjiangkou Project Water Quality Security "Four Pre” Platform[J]. Water Resources Informatization, 2024(1):6-12. (in Chinese))
[11]
张毅. 覆盖“天空地海”的自然资源智能感知监测监管体系建设的构想:以江苏省为例[J]. 国土资源信息化, 2021(6):7-14.
(ZHANG Yi. Thoughts on the Construction of Intelligent Sensing Monitoring and Supervision System of Natural Resources Covering “Sky,Air,Land and Sea”—A Case Study of Jiangsu Province[J]. Land and Resources Informatization, 2021(6):7-14. (in Chinese))
[12]
李国英. 为以中国式现代化全面推进中华民族伟大复兴提供有力的水安全保障[J]. 水利发展研究, 2023, 23(7):1-2.
(LI Guo-ying. Strengthening Water Security for Efforts to Advance the Rejuvenation of the Chinese Nation on all Fronts through a Chinese Path to Modernization[J]. Water Resources Development Research, 2023, 23(7): 1-2. (in Chinese))
[13]
PAN X, CAO J, LIN L, et al. Distribution Characteristics of Carbon, Nitrogen, and Phosphorus and Pollution Load Estimation of Sediments in Danjiangkou Reservoir, China[J]. Water, 2023, 15(16): 2885.
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