Simulation of agricultural non-point source pollution in Xichuan by using SWAT model

This paper evaluated the applicability of using SWAT to access agricultural non-point source pollution in Xichuan area. In order to build the model, DEM, soil sort and land use map, climate monitoring data were collected as basic database. The SWAT model was calibrated and validated for the SWAT was...

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Published inIOP conference series. Earth and environmental science Vol. 113; no. 1; pp. 12167 - 12170
Main Authors Xing, Linan, Zuo, Jiane, Liu, Fenglin, Zhang, Xiaohui, Cao, Qiguang
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.02.2018
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Abstract This paper evaluated the applicability of using SWAT to access agricultural non-point source pollution in Xichuan area. In order to build the model, DEM, soil sort and land use map, climate monitoring data were collected as basic database. The SWAT model was calibrated and validated for the SWAT was carried out using streamflow, suspended solids, total phosphorus and total nitrogen records from 2009 to 2011. Errors, coefficient of determination and Nash-Sutcliffe coefficient were considered to evaluate the applicability. The coefficient of determination were 0.96, 0.66, 0.55 and 0.66 for streamflow, SS, TN, and TP, respectively. Nash-Sutcliffe coefficient were 0.93, 0.5, 0.52 and 0.63, respectively. The results all meet the requirements. It suggested that the SWAT model can simulate the study area.
AbstractList This paper evaluated the applicability of using SWAT to access agricultural non-point source pollution in Xichuan area. In order to build the model, DEM, soil sort and land use map, climate monitoring data were collected as basic database. The SWAT model was calibrated and validated for the SWAT was carried out using streamflow, suspended solids, total phosphorus and total nitrogen records from 2009 to 2011. Errors, coefficient of determination and Nash-Sutcliffe coefficient were considered to evaluate the applicability. The coefficient of determination were 0.96, 0.66, 0.55 and 0.66 for streamflow, SS, TN, and TP, respectively. Nash-Sutcliffe coefficient were 0.93, 0.5, 0.52 and 0.63, respectively. The results all meet the requirements. It suggested that the SWAT model can simulate the study area.
Author Cao, Qiguang
Xing, Linan
Zhang, Xiaohui
Zuo, Jiane
Liu, Fenglin
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CitedBy_id crossref_primary_10_1007_s11356_021_15927_7
crossref_primary_10_1111_wej_12735
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Cites_doi 10.1016/S1001-0742(09)60184-4
10.13031/2013.3000
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Copyright Published under licence by IOP Publishing Ltd
2018. This work is published under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
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References Wang Xiao (1) 2013; 33
2
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Cai M. (4) 2004; 0
Xu S. (3) 2004; 13
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  publication-title: China Environmental Science
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    fullname: Wang Xiao
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  year: 2004
  ident: 3
  publication-title: Resources and Environment in the Yangtze Basin
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    fullname: Xu S.
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  publication-title: Journal of Hydraulic Engineering
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SubjectTerms Climate monitoring
Coefficients
Land use
Nonpoint source pollution
Phosphorus
Point source pollution
Pollution sources
Solid suspensions
Stream discharge
Stream flow
Suspended solids
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