SPATIO-TEMPORAL VARIATION ANALYSIS OF WATER QUALITY IN SLUICE-CONTROLLED URBAN RIVER BASED ON TWO-STEP CLUSTER
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摘要: 为探究典型城市闸控河流水质时空分布规律性差异,提供城市闸控河流水生态保护与精准调控依据,将两步聚类法应用于秦淮河南京段水质时空变异特征研究中。结果表明:近年来秦淮河南京段以氮、磷污染为主,且水质情况可分为3类(类型1-较优水质、类型2-中等水质、类型3-较劣水质);在空间分布上,河流流向与水质变化趋势存在密切关系,除入江口处断面,从上游至下游类型3水体的多年平均占比从15%增加至38%,水质污染程度逐渐增加;在时间分布上,年际间的类型3水体占比从31%(2008年)逐年降至1%(2015年),水质持续改善,且年内水质在夏秋季节较好。为改善城市闸控河段水质,可在保证城内河道不发生内涝的前提下增加入江口处闸门开启频次,同时加强冬春季节引调水力度。Abstract: To explore the spatio-temporal regular variation of water quality in typical sluice-controlled rivers of cities along the Yangtze River, and to provide support for hydro-ecological conservancy and precise regulation, the two-step clustering method was applied to the research on the spatio-temporal variation of water quality in the Nanjing reach of Qinhuai River. The results showed that, in recent years, the Nanjing reach was mainly polluted by nitrogen and phosphorus, and the water quality could be grouped into three types(i.e., Type 1-Better water quality, Type 2-medium water quality, and Type 3-poor water quality). In space, the direction of the river was closely related to the variation trend of water quality. From upstream to downstream, the average annual proportion of Type 3 water body increased from 15% to 38%, along the six sections except the section at the mouth of the Qinhuai River, indicating the gradual increase of water pollution degree. In time, the proportion of Type 3 water body decreased from 31%(2008) to 1%(2015), showing that the water quality continued to improve. In addition, the water quality was better in summer and autumn. To improve the water quality in the sluice-controlled river, the opening frequency of sluice at the mouth of the Qinhuai River could be increased under the premise of ensuring no waterlogging in the urban river, and the intensity of water diversion in winter and spring should be strengthened.
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[1] 朱诗洁,毛劲乔,戴会超.资料缺乏地区水系连通工程效益评价方法研究[J].水力发电学报,2021,40(2):12-19. [2] 宋为威,逄勇.秦淮河流域控源截污与生态补水联合效应研究[J].水力发电学报,2018,37(1):31-39. [3] 窦明,米庆彬,李桂秋,等.闸控河段水质转化机制研究Ⅰ:模型研制[J].水利学报,2016,47(4):527-536. [4] 景朝霞,夏军,张翔,等.汉江中下游干流水质状况时空分布特征及变化规律[J].环境科学研究,2019,32(1):104-115. [5] 苏程佳,陈晓宏,谭永强,等.潭江水质时空变化特征及其驱动因子[J/OL].水资源保护:1-9[2021-04-20].http://kns.cnki.net/kcms/detail/32.1356.TV.20201229.1135.002.html. [6] 潘小保,范子武,柳杨,等.闸泵堰联合调度下水质改善试验研究[J].水利规划与设计,2020(3):125-129. [7] 冯强,易境,刘书敏,等.城市黑臭水体污染现状、治理技术与对策[J].环境工程,2020,38(8):82-88. [8] 童朝锋,岳亮亮,郝嘉凌,等.南京市外秦淮河水质模拟及引调水效果[J].水资源保护,2012,28(6):49-54. [9] 许兴武,沃玉报,胡阳,等.秦淮河水质改善现场调水试验[J].河海大学学报(自然科学版),2018,46(6):492-496. [10] 马小雪,龚畅,郭加汛,等.长江下游快速城市化地区水污染特征及源解析:以秦淮河流域为例[J/OL].环境科学:1-14[2021-06-14].https://doi.org/10.13227/j.hjkx.202011184. [11] MA X X,WANG L H,YANG H,et al.Spatiotemporal analysis of water quality using multivariate statistical techniques and the water quality identification index for the qinhuai river basin,east China[J].Water,2020,12(10):2764. [12] LIU Y C,WANG C S,CHUN Y T,et al.A novel method in surface water quality assessment based on improved variable fuzzy set pair analysis[J].International Journal of Environmental Research and Public Health,2019,16(22):4314. [13] GAO Y G,GAN J F,CHEN J F,et al.Regionalizing aquatic ecosystems based on the river subbasin taxonomy concept and spatial clustering techniques[J].IJERPH,2011,8(11):4367-4385. [14] 汪心雯,刘子琦,郭琼琼,等.贵州黄洲河流域水质时空分布特征及污染源解析[J/OL].环境工程:1-10[2021-04-19].http://kns.cnki.net/kcms/detail/11.2097.X.20210311.1549.002.html. [15] 尤南山,蒙吉军.基于生态敏感性和生态系统服务的黑河中游生态功能区划与生态系统管理[J].中国沙漠,2017,37(1):186-197. [16] QIN H T,HUANG Q H,ZHANG Z W,et al.Carbon dioxide emission driving factors analysis and policy implications of chinese cities:combining geographically weighted regression with two-step cluster[J].Science of the Total Environment,2019,684:413-424. [17] 毛劲乔,惠二青.四大家鱼产卵期水库滞冷效应对下游水温影响[J].排灌机械工程学报,2020,38(7):691-696. [18] 刘杨,刘丽群,刘桂珍,等.一种新的组合聚类分析方法及其应用[J].机械设计与研究,2012,28(6):1-3,6. [19] 董雯,王瑞琛,李怀恩,等.渭河西咸段水质时空变异特征分析[J].水力发电学报,2020,39(11):80-89. [20] 李跃飞,夏永秋,李晓波,等.秦淮河典型河段总氮总磷时空变异特征[J].环境科学,2013,34(1):91-97. [21] 李玲静,汪存友,余嘉元.对两阶聚类法自动确定聚类数规则的求证[J].统计与决策,2010(20):28-29. [22] 徐祖信,徐晋,金伟,等.我国城市黑臭水体治理面临的挑战与机遇[J].给水排水,2019,55(3):1-5,77.
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