SPARROW-Publications

From CSDMS
References SPARROW

Publication(s)YearTypeCited
Hoos, Anne B.; McMahon, Gerard; 2009. Spatial analysis of instream nitrogen loads and factors controlling nitrogen delivery to streams in the southeastern United States using spatially referenced regression on watershed attributes (SPARROW) and regional classification frameworks. Hydrological Processes, 23, 2275–2294. 10.1002/hyp.7323
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2009Model overview 104
Robertson, Dale M.; Schwarz, Gregory E.; Saad, David A.; Alexander, Richard B.; 2009. Incorporating Uncertainty Into the Ranking of SPARROW Model Nutrient Yields From Mississippi/Atchafalaya River Basin Watersheds. JAWRA Journal of the American Water Resources Association, 45, 534–549. 10.1111/j.1752-1688.2009.00310.x
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2009Model overview 88
Schwarz, G.E.; Hoos, A.B.; Alexander, R.B.; Smith, R.A.; 2006. The SPARROW Surface Water-Quality Model: Theory, Application and User Documentation.. .
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2006Model overview 243
Smith, Richard A.; Schwarz, Gregory E.; Alexander, Richard B.; 1997. Regional interpretation of water-quality monitoring data. Water Resources Research, 33, 2781–2798. 10.1029/97WR02171
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1997Model overview 666
Schwarz, G.E.; 2008. A Preliminary SPARROW model of suspended sediment for the conterminous United States. U.S. Geological Survey Open-File Report 2008–1205.
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2008Model overview 25
Alexander, Richard B.; Böhlke, John Karl; Boyer, Elizabeth W.; David, Mark B.; Harvey, Judson W.; Mulholland, Patrick J.; Seitzinger, Sybil P.; Tobias, Craig R.; Tonitto, Christina; Wollheim, Wilfred M.; 2009. Dynamic modeling of nitrogen losses in river networks unravels the coupled effects of hydrological and biogeochemical processes. Biogeochemistry, 93, 91–116. 10.1007/s10533-008-9274-8
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2009Model application 218
Alexander, Richard B.; Smith, Richard A.; Schwarz, Gregory E.; Boyer, Elizabeth W.; Nolan, Jacqueline V.; Brakebill, John W.; 2008. Differences in Phosphorus and Nitrogen Delivery to The Gulf of Mexico from the Mississippi River Basin. Environmental Science & Technology, 42, 822–830. 10.1021/es0716103
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2008Model overview 776
Böhlke, John Karl; Antweiler, Ronald C.; Harvey, Judson W.; Laursen, Andrew E.; Smith, Lesley K.; Smith, Richard L.; Voytek, Mary A.; 2009. Multi-scale measurements and modeling of denitrification in streams with varying flow and nitrate concentration in the upper Mississippi River basin, USA. Biogeochemistry, 93, 117–141. 10.1007/s10533-008-9282-8
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2009Model application 141
Harrison, John A.; Maranger, Roxane J.; Alexander, Richard B.; Giblin, Anne E.; Jacinthe, Pierre-Andre; Mayorga, Emilio; Seitzinger, Sybil P.; Sobota, Daniel J.; Wollheim, Wilfred M.; 2009. The regional and global significance of nitrogen removal in lakes and reservoirs. Biogeochemistry, 93, 143–157. 10.1007/s10533-008-9272-x
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2009Model overview 338
Preston, S.D.; Alexander, R.B.; Woodside, M.D.; Hamilton, P.A.; 2009. SPARROW MODELING--Enhancing Understanding of the Nation's Water Quality. U.S. Geological Survey Fact Sheet 2009-3019.
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2009Model application 56
Alexander, Richard B.; Elliott, Alexander H.; Shankar, Ude; McBride, Graham B.; 2002. Estimating the sources and transport of nutrients in the Waikato River Basin, New Zealand: SOURCES AND TRANSPORT OF NUTRIENTS. Water Resources Research, 38, 4–1-4-23. 10.1029/2001WR000878
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2002Model application 181
Miller, Matthew P.; Buto, Susan G.; Susong, David D.; Rumsey, Christine A.; 2016. The importance of base flow in sustaining surface water flow in the Upper Colorado River Basin: UCRB BASE FLOW DISCHARGE TO STREAMS. Water Resources Research, 52, 3547–3562. 10.1002/2015WR017963
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2016Model application 91
Alexander, R.B.; Smith, R.A.; Schwarz, G.E.; 2004. Estimates of diffuse phosphorus sources in surface waters of the United States using a spatially referenced watershed model. Water Science and Technology, 49, 1–10. 10.2166/wst.2004.0150
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2004Model application 76
Brakebill, J.W.; Wolock, D.M.; Terziotti, S.E.; 2011. Digital Hydrologic Networks Supporting Applications Related to Spatially Referenced Regression Modeling1: Digital Hydrologic Networks Supporting Applications Related to Spatially Referenced Regression Modeling. JAWRA Journal of the American Water Resources Association, 47, 916–932. 10.1111/j.1752-1688.2011.00578.x
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2011Model application 58
Duan, W. L.; He, B.; Takara, K.; Luo, P. P.; Nover, D.; Hu, M. C.; 2015. Modeling suspended sediment sources and transport in the Ishikari River basin, Japan, using SPARROW. Hydrology and Earth System Sciences, 19, 1293–1306. 10.5194/hess-19-1293-2015
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2015Model application 31
Wellen, Christopher C.; Shatilla, Nadine J.; Carey, Sean K.; 2015. Regional scale selenium loading associated with surface coal mining, Elk Valley, British Columbia, Canada. Science of The Total Environment, 532, 791–802. 10.1016/j.scitotenv.2015.06.040
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2015Model application 37
Roberts, Allen D.; Prince, Stephen D.; Jantz, Claire A.; Goetz, Scott J.; 2009. Effects of projected future urban land cover on nitrogen and phosphorus runoff to Chesapeake Bay. Ecological Engineering, 35, 1758–1772. 10.1016/j.ecoleng.2009.09.001
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2009Model application 50
Wise, Daniel R.; Johnson, Henry M.; 2011. Surface-Water Nutrient Conditions and Sources in the United States Pacific Northwest1: Surface-Water Nutrient Conditions and Sources in the United States Pacific Northwest. JAWRA Journal of the American Water Resources Association, 47, 1110–1135. 10.1111/j.1752-1688.2011.00580.x
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2011Model application 42
Poullain, Emilie; Garestier, Franck; Levoy, Franck; Bretel, Patrice; 2016. Analysis of ALS Intensity Behavior as a Function of the Incidence Angle in Coastal Environments. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 9, 313–325. 10.1109/JSTARS.2015.2510337
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2016Model application 16
T. Al Hattab, Mariam; E. Ghaly, Abdel; 2012. Disposal and Treatment Methods for Pesticide Containing Wastewaters: Critical Review and Comparative Analysis. Journal of Environmental Protection, 3, 431–453. 10.4236/jep.2012.35054
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2012Model application 34
Ator, Scott W.; Garcia, Ana Maria; 2016. Application of SPARROW Modeling to Understanding Contaminant Fate and Transport from Uplands to Streams. JAWRA Journal of the American Water Resources Association, 52, 685–704. 10.1111/1752-1688.12419
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2016Model application 17
Brakebill, John W.; Preston, Stephen D.; 2003. A Hydrologic Network Supporting Spatially Referenced Regression Modeling in the Chesapeake Bay Watershed. Environmental Monitoring and Assessment, 81, 73–84. 10.1023/A:1021356420864
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2003

Model application

12
Dai, Yibin; Lang, Yunchao; Wang, Tiejun; Han, Xiaokun; Wang, Lichun; Zhong, Jun; 2021. Modelling the sources and transport of ammonium nitrogen with the SPARROW model: A case study in a karst basin. Journal of Hydrology, 592, 125763. 10.1016/j.jhydrol.2020.125763
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2021Model application 7
Wang, Yidi; Ouyang, Wei; Zhang, Yuheng; Lin, Chunye; He, Mengchang; Wang, Pengtao; 2021. Quantify phosphorus transport distinction of different reaches to estuary under long-term anthropogenic perturbation. Science of The Total Environment, 780, 146647. 10.1016/j.scitotenv.2021.146647
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2021Model application 3
Wetherbee, Gregory; Wieczorek, Michael; Robertson, Dale; Saad, David; Novick, Jon; Mast, M. Alisa; 2022. Estimating urban air pollution contribution to South Platte River nitrogen loads with National Atmospheric Deposition Program data and SPARROW model. Journal of Environmental Management, 301, 113861. 10.1016/j.jenvman.2021.113861
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2022

Model application

1
Tillman, Fred D.; David W. Anning; 2014. Updated estimates of long-term average dissolved-solids loading in streams and rivers of the Upper Colorado River Basin. In: (eds.).. 11 p..
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2014

Model application

6
Evenson, E.J., Orndorff, R.C., Blome, C.D., Bohlke, J.K., Herschberger, P.K., Langenheim, V.E., McCabe, G.J., Morlock, S.E., Reeves, H.W., Verdin, J.P., Weyers, H.S., and Wood, T.M. 2012. Strategic directions for U.S. Geological Survey water science, 2012–2022—Observing, understanding, predicting, and delivering water science to the Nation. .
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2012

Model application

7
Patino, Eduardo, Conrads, Paul, Swain, Eric, and Beerens, James, 2018. Everglades Depth Estimation Network (EDEN)—A decade of serving hydrologic information to scientists and resource managers (ver. 1.1, January 2018). .
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2018

Model application

5
Wise, D.R.; Johnson, H.M.; 2013. Application of the SPARROW model to assess surface-water nutrient conditions and sources in the United States Pacific Northwest. Scientific Investigations Report.
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2013

Model application

22
Robertson, D.M., and Saad, D.A.; 2019. Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment loads in streams of the Midwestern United States. .
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2019

Model application

18
Wise, D.R.; 2019. Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment loads in streams of the Pacific region of the United States (ver. 1.1, June 2020). .
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2019

Model application

5
Hoos, A.B.; Terziotti, S.; McMahon, G.; Savvas, K.; Tighe, K.C.; Alkons-Wolinsky, R.; 2008. Data to support statistical modeling of instream nutrient load based on watershed attributes, southeastern United States, 2002. .
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2008

Model application

19
Antweiler, R.C.; Smith, R.L.; Voytek, M.A.; Bohlke, J.K.; Dupre, D.H.; 2005. Water-quality data from two agricultural drainage basins in northwestern Indiana and northeastern Illinois: III. biweekly data, 2000-2002. Open file report.
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2005

Model application

6
Moore, Richard B; 2004. Estimation of Total Nitrogen and Phosphorus in New England Streams Using Spatially Referenced Regression Models. Scientific Investigations Report.
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2004

Model application

95
Ator, S.W.; 2019. Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment loads in streams of the northeastern United States. Scientific Investigations Report.
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2019

Model application

14
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Nr. of publications: 35
Total citations: 3508
h-index: 21
m-quotient: 0.78

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