Development of a water quality assessment model: a water quality assessment model based on watershed characteristics by non-linear regression

被引:4
作者
Cho, Yongdeok [1 ]
机构
[1] Korea Water Forum, Seoul, South Korea
来源
WATER SCIENCE AND TECHNOLOGY-WATER SUPPLY | 2015年 / 15卷 / 02期
关键词
non-linear regression; statistics; water quality assessment model; watershed characteristics; LAND-USE; ZONE;
D O I
10.2166/ws.2014.098
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Here, a water quality assessment model (WQAM) is developed by non-linear regression as an alternative to physical watershed modeling in South Korea. Three cases and 10 scenarios are applied and reviewed to determine the most appropriate WQAM. The three cases are: (1) the area size allocation of sub-watersheds, (2) the watershed imperviousness ratio, and (3) the combination of the area size and imperviousness ratio. The 10 scenarios are: (1) impervious, (2) impervious vertical bar pervious, (3) impervious + rainfall, (4) impervious + slope, (5) impervious + rainfall + slope, (6) slope, (7) land usage, (8) land usage + rainfall, (9) land usage + slope, and (10) land usage + rainfall + slope. The best WQAMs are subsequently developed from the generated equations using statistics (R-2, Adjusted R2, F-test, the Akaike information criterion and the Shapiro-Wilk test). In addition, the WQAM is verified using the Geum-Sum-Young River watershed. The percentage differences of biochemical oxygen demand (BOD), total nitrogen (T-N), and total phosphorus (T-P) are 31.66%, 8.08%, and 48.94%, respectively. The developed WQAM can be used in place of complex watershed modeling and to aid in the determination of the best restoration locations.
引用
收藏
页码:236 / 247
页数:12
相关论文
共 17 条
[1]   Impervious surface as an indicator of pH and specific conductance in the urbanizing coastal zone of New Jersey, USA [J].
Conway, Tenley M. .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2007, 85 (02) :308-316
[2]  
Donigian A. S., 2002, P WATER ENV FEDERATI, V2002, P44
[3]  
Kutner, 2004, APPL LINEAR STAT MOD
[4]   Linking land cover and water quality in New York City's water supply watersheds [J].
Mehaffey, MH ;
Nash, MS ;
Wade, TG ;
Ebert, DW ;
Jones, KB ;
Rager, A .
ENVIRONMENTAL MONITORING AND ASSESSMENT, 2005, 107 (1-3) :29-44
[5]  
Novotny V., 2003, Water Quality: Diffuse Pollution and Watershed Management, VSecond, P1
[6]  
Novotny V., 2008, Encyclopedia of Ecology, P3748
[7]   Correlation Between Upstream Human Activities and Riverine Antibiotic Resistance Genes [J].
Pruden, Amy ;
Arabi, Mazdak ;
Storteboom, Heather N. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (21) :11541-11549
[8]   A watershed-based land prioritization model for water supply protection [J].
Randhir, TO ;
O'Connor, R ;
Penner, PR ;
Goodwin, DW .
FOREST ECOLOGY AND MANAGEMENT, 2001, 143 (1-3) :47-56
[9]   Changes in chemical and physical propertiesof stream water across an urban-rural gradient in western Georgia [J].
Schoonover J.E. ;
Lockaby B.G. ;
Pan S. .
Urban Ecosystems, 2005, 8 (1) :107-124
[10]  
Schueler T., 2005, URBAN SUBWATERSHED R