Modeling Agricultural Watersheds with the Soil and Water Assessment Tool (SWAT): Calibration and Validation with a Novel Procedure for Spatially Explicit HRUs

被引:0
|
作者
Awoke Dagnew Teshager
Philip W Gassman
Silvia Secchi
Justin T Schoof
Girmaye Misgna
机构
[1] Southern Illinois University Carbondale,Environmental Resources and Policy
[2] Iowa State University,Department of Economics, Center for Agricultural and Rural Development
[3] Southern Illinois University Carbondale,Department of Geography and Environmental Resources
[4] Southern Illinois University Carbondale,Department of Geography and Environmental Resources
来源
Environmental Management | 2016年 / 57卷
关键词
Watershed modeling; SWAT; Calibration; Flow; Landuse; HRUs;
D O I
暂无
中图分类号
学科分类号
摘要
Applications of the Soil and Water Assessment Tool (SWAT) model typically involve delineation of a watershed into subwatersheds/subbasins that are then further subdivided into hydrologic response units (HRUs) which are homogeneous areas of aggregated soil, landuse, and slope and are the smallest modeling units used within the model. In a given standard SWAT application, multiple potential HRUs (farm fields) in a subbasin are usually aggregated into a single HRU feature. In other words, the standard version of the model combines multiple potential HRUs (farm fields) with the same landuse/landcover, soil, and slope, but located at different places of a subbasin (spatially non-unique), and considers them as one HRU. In this study, ArcGIS pre-processing procedures were developed to spatially define a one-to-one match between farm fields and HRUs (spatially unique HRUs) within a subbasin prior to SWAT simulations to facilitate input processing, input/output mapping, and further analysis at the individual farm field level. Model input data such as landuse/landcover (LULC), soil, crop rotation, and other management data were processed through these HRUs. The SWAT model was then calibrated/validated for Raccoon River watershed in Iowa for 2002–2010 and Big Creek River watershed in Illinois for 2000–2003. SWAT was able to replicate annual, monthly, and daily streamflow, as well as sediment, nitrate and mineral phosphorous within recommended accuracy in most cases. The one-to-one match between farm fields and HRUs created and used in this study is a first step in performing LULC change, climate change impact, and other analyses in a more spatially explicit manner.
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页码:894 / 911
页数:17
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