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Using Multiple Watershed Models to Predict Water, Nitrogen, and Phosphorus Discharges to the Patuxent Estuary

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dc.contributor.author Boomer, Kathleen M. B. en
dc.contributor.author Weller, Donald E. en
dc.contributor.author Jordan, Thomas E. en
dc.contributor.author Linker, Lewis en
dc.contributor.author Liu, Zhi-Jun en
dc.contributor.author Reilly, James en
dc.contributor.author Shenk, Gary en
dc.contributor.author Voinov, Alexey A. en
dc.date.accessioned 2013-02-15T19:45:15Z
dc.date.available 2013-02-15T19:45:15Z
dc.date.issued 2013
dc.identifier.citation Boomer, Kathleen M. B., Weller, Donald E., Jordan, Thomas E., Linker, Lewis, Liu, Zhi-Jun, Reilly, James, Shenk, Gary, and Voinov, Alexey A. 2013. "<a href="https://repository.si.edu/handle/10088/19546">Using Multiple Watershed Models to Predict Water, Nitrogen, and Phosphorus Discharges to the Patuxent Estuary</a>." <em>JAWRA Journal of the American Water Resources Association</em>. 49 (1):15&ndash;39. <a href="https://doi.org/10.1111/j.1752-1688.2012.00689.x">https://doi.org/10.1111/j.1752-1688.2012.00689.x</a> en
dc.identifier.issn 1752-1688
dc.identifier.uri http://hdl.handle.net/10088/19546
dc.description.abstract Boomer, Kathleen M.B., Donald E. Weller, Thomas E. Jordan, Lewis Linker, Zhi-Jun Liu, James Reilly, Gary Shenk, and Alexey A. Voinov, 2012. Using Multiple Watershed Models to Predict Water, Nitrogen, and Phosphorus Discharges to the Patuxent Estuary. Journal of the American Water Resources Association (JAWRA) 1-25. DOI: 10.1111/j.1752-1688.2012.00689.xAbstract: We analyzed an ensemble of watershed models that predict flow, nitrogen, and phosphorus discharges. The models differed in scope and complexity and used different input data, but all had been applied to evaluate human impacts on discharges to the Patuxent River or to the Chesapeake Bay. We compared predictions to observations of average annual, annual time series, and monthly discharge leaving three basins. No model consistently matched observed discharges better than the others, and predictions differed as much as 150% for every basin. Models that agreed best with the observations in one basin often were among the worst models for another material or basin. Combining model predictions into a model average improved overall reliability in matching observations, and the range of predictions helped describe uncertainty. The model average was not the closest to the observed discharge for every material, basin, and time frame, but the model average had the highest Nash Sutcliffe performance across all combinations. Consistently poor performance in predicting phosphorus loads suggests that none of the models capture major controls. Differences among model predictions came from differences in model structures, input data, and the time period considered, and also to errors in the observed discharge. Ensemble watershed modeling helped identify research needs and quantify the uncertainties that should be considered when using the models in management decisions. en
dc.relation.ispartof JAWRA Journal of the American Water Resources Association en
dc.title Using Multiple Watershed Models to Predict Water, Nitrogen, and Phosphorus Discharges to the Patuxent Estuary en
dc.type Journal Article en
dc.identifier.srbnumber 113164
dc.identifier.doi 10.1111/j.1752-1688.2012.00689.x
rft.jtitle JAWRA Journal of the American Water Resources Association
rft.volume 49
rft.issue 1
rft.spage 15
rft.epage 39
dc.description.SIUnit SERC en
dc.description.SIUnit Peer-reviewed en
dc.citation.spage 15
dc.citation.epage 39


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