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Page 6, results 126 - 150

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Publication Extents

Not all publications have extents, not all extents are completely accurate
The effect of particle size distribution on the design of urban stormwater control measures
William R. Selbig, Michael N. Fienen, Judy A. Horwatich, Roger T. Bannerman
2016, Water (8)
An urban pollutant loading model was used to demonstrate how incorrect assumptions on the particle size distribution (PSD) in urban runoff can alter the design characteristics of stormwater control measures (SCMs) used to remove solids in stormwater. Field-measured PSD, although highly variable, is generally coarser than the widely-accepted PSD characterized...
Predicting recreational water quality advisories: A comparison of statistical methods
Wesley R. Brooks, Steven R. Corsi, Michael N. Fienen, Rebecca B. Carvin
2016, Environmental Modelling and Software (76) 81-94
Epidemiological studies indicate that fecal indicator bacteria (FIB) in beach water are associated with illnesses among people having contact with the water. In order to mitigate public health impacts, many beaches are posted with an advisory when the concentration of FIB exceeds a beach action value. The most commonly used...
Human and bovine viruses and bacteria at three Great Lakes beaches: Environmental variable associations and health risk
Steven R. Corsi, Mark A. Borchardt, Rebecca B. Carvin, Tucker R Burch, Susan K. Spencer, Michelle A. Lutz, Colleen M. McDermott, Kimberly M. Busse, Gregory Kleinheinz, Xiaoping Feng, Jun Zhu
2016, Environmental Science & Technology (50) 987-995
Waterborne pathogens were measured at three beaches in Lake Michigan, environmental factors for predicting pathogen concentrations were identified, and the risk of swimmer infection and illness was estimated. Waterborne pathogens were detected in 96% of samples collected at three Lake Michigan beaches in summer, 2010. Samples were quantified for 22...
Ecohydrology and Its Relation to Integrated Groundwater Management
Randall J. Hunt, Masaki Hayashi, Okke Batelaan
2016, Book chapter, Integrated Groundwater Management
In the twentieth century, groundwater characterization focused primarily on easily measured hydraulic metrics of water storage and flows. Twenty-first century concepts of groundwater availability, however, encompass other factors having societal value, such as ecological well-being. Effective ecohydrological science is a nexus of fundamental understanding derived from two scientific disciplines: (1)...
Integrated modeling approach for fate and transport of submerged oil and oil-particle aggregates in a freshwater riverine environment
Faith A. Fitzpatrick, Rex Johnson, Zhenduo Zhu, David Waterman, Richard D. McCulloch, Earl Hayter, Marcelo H. Garcia, Michel C. Boufadel, Timothy Dekker, Jacob S. Hassan, David T. Soong, Christopher J. Hoard, Kenneth Lee
2016, Conference Paper, Proceedings of the joint federal interagency conference 2015
The Enbridge Line 6B pipeline release of diluted bitumen into the Kalamazoo River downstream of Marshall, Michigan, U.S.A., in July 2010 was one of the largest oil spills into freshwater in North American history. A portion of the oil interacted with river sediment and submerged requiring the development and implementation...
The international scale of the groundwater issue
Michael Fienen, Muhammad Arshad
2016, Book chapter, Integrated groundwater management
Throughout history, and throughout the world, groundwater has been a major source of water for sustaining human life. Use of this resource has increased dramatically over the last century. In many areas of the world, the balance between human and ecosystem needs is difficult to maintain. Understanding the international scale...
Groundwater regulation and integrated planning
Philippe Quevauviller, Okke Batelaan, Randall J. Hunt
2016, Book chapter
The complex nature of groundwater and the diversity of uses and environmental interactions call for emerging groundwater problems to be addressed through integrated management and planning approaches. Planning requires different levels of integration dealing with: the hydrologic cycle (the physical process) including the temporal dimension; river basins and aquifers (spatial...
Integrated groundwater management: An overview of concepts and challenges
Anthony J. Jakeman, Olivier Barreteau, Randall J. Hunt, Jean-Daniel Rinaudo, Andrew Ross
Anthony J. Jakeman, Olivier Barreteau, Randall J. Hunt, Jean-Daniel Rinaudo, Andrew Ross, editor(s)
2016, Book chapter, Integrated groundwater management
Managing water is a grand challenge problem and has become one of humanity’s foremost priorities. Surface water resources are typically societally managed and relatively well understood; groundwater resources, however, are often hidden and more difficult to conceptualize. Replenishment rates of groundwater cannot match past and current rates of depletion in...
Applied groundwater modeling, 2nd Edition
Mary P. Anderson, William W. Woessner, Randall J. Hunt
2015, Book
This second edition is extensively revised throughout with expanded discussion of modeling fundamentals and coverage of advances in model calibration and uncertainty analysis that are revolutionizing the science of groundwater modeling. The text is intended for undergraduate and graduate level courses in applied groundwater modeling and as a comprehensive reference...
Stream geomorphic and habitat data from a baseline study of Underwood Creek, Wisconsin, 2012
Benjamin M. Young, Faith A. Fitzpatrick, James D. Blount
2015, Data Series 947
Geomorphic and habitat data were collected along Underwood Creek as part of a larger study of stream water quality conditions in the greater Milwaukee, Wisconsin, area. The data were collected to characterize baseline physical conditions in Underwood Creek prior to a potential discharge of wastewater return flow to the stream...
Hydrodynamic assessment data associated with the July 2010 line 6B spill into the Kalamazoo River, Michigan, 2012–14
Paul C. Reneau, David T. Soong, Christopher J. Hoard, Faith A. Fitzpatrick
2015, Open-File Report 2015-1205
Hydrodynamic-assessment data for the Kalamazoo River were collected by the U.S. Geological Survey (USGS) during 2012–14 to augment other hydrodynamic data-collection efforts by Enbridge Energy L.P. and the U.S. Environmental Protection Agency associated with the 2010 Enbridge Line 6B oil spill. Specifically, the USGS data-collection efforts were focused on additional...
The importance of considering shifts in seasonal changes in discharges when predicting future phosphorus loads in streams
Meredith B. LaBeau, Alex S. Mayer, Veronica Griffis, David Jr. Watkins, Dale M. Robertson, Rabi Gyawali
2015, Biogeochemistry (126) 153-172
In this work, we hypothesize that phosphorus (P) concentrations in streams vary seasonally and with streamflow and that it is important to incorporate this variation when predicting changes in P loading associated with climate change. Our study area includes 14 watersheds with a range of land uses throughout the U.S....
Observed decrease in atmospheric mercury explained by global decline in anthropogenic emissions
Yanxu Zhang, Daniel J. Jacob, Hannah M. Horowitz, Long Chen, Helen M. Amos, David P. Krabbenhoft, Franz Slemr, Vincent L. St. Louis, Elsie M. Sunderland
2015, Proceedings of the National Academy of Sciences (133) 526-531
Observations of elemental mercury (Hg0) at sites in North America and Europe show large decreases (∼1–2% y−1) from 1990 to present. Observations in background northern hemisphere air, including Mauna Loa Observatory (Hawaii) and CARIBIC (Civil Aircraft for the Regular Investigation of the atmosphere Based on an Instrument Container) aircraft flights,...
Groundwater/surface-water interactions in the Bad River Watershed, Wisconsin
Andrew T. Leaf, Michael N. Fienen, Randall J. Hunt, Cheryl A. Buchwald
2015, Scientific Investigations Report 2015-5162
A groundwater-flow model was developed for the Bad River Watershed and surrounding area by using the U.S. Geological Survey (USGS) finite-difference code MODFLOW-NWT. The model simulates steady-state groundwater-flow and base flow in streams by using the streamflow routing (SFR) package. The objectives of this study were to: (1) develop an...
Use of stable isotope signatures to determine mercury sources in the Great Lakes
Ryan F. Lepak, Runsheng Yin, David P. Krabbenhoft, Jacob M. Ogorek, John F. DeWild, Thomas M. Holsen, James P. Hurley
2015, Environmental Science & Technology Letters (2)-335
Sources of mercury (Hg) in Great Lakes sediments were assessed with stable Hg isotope ratios using multicollector inductively coupled plasma mass spectrometry. An isotopic mixing model based on mass-dependent (MDF) and mass-independent fractionation (MIF) (δ202Hg and Δ199Hg) identified three primary Hg sources for sediments: atmospheric, industrial, and watershed-derived. Results indicate...
Organic waste compounds as contaminants in Milwaukee-area streams
Austin K. Baldwin, Steven R. Corsi, Christopher Magruder, Matthew Magruder, Jennifer L. Bruce
2015, Fact Sheet 2015-3056
Organic waste compounds (OWCs) are ingredients and by-products of common agricultural, industrial, and household substances that can contaminate our streams through sources like urban runoff, sewage overflows, and leaking septic systems. To better understand how OWCs are affecting Milwaukee-area streams, the U.S. Geological Survey, in cooperation with the Milwaukee Metropolitan...
Approaches in highly parameterized inversion—PEST++ Version 3, a Parameter ESTimation and uncertainty analysis software suite optimized for large environmental models
David E. Welter, Jeremy T. White, Randall J. Hunt, John E. Doherty
2015, Techniques and Methods 7-C12
The PEST++ Version 1 object-oriented parameter estimation code is here extended to Version 3 to incorporate additional algorithms and tools to further improve support for large and complex environmental modeling problems. PEST++ Version 3 includes the Gauss-Marquardt-Levenberg (GML) algorithm for nonlinear parameter estimation, Tikhonov regularization, integrated linear-based uncertainty quantification, options...
Reducing fertilizer-nitrogen losses from rowcrop landscapes: Insights and implications from a spatially explicit watershed model
Eileen McLellan, Keith Schilling, Dale M. Robertson
2015, Journal of the American Water Resources Association (51) 1003-1019
We present conceptual and quantitative models that predict changes in fertilizer-derived nitrogen delivery from rowcrop landscapes caused by agricultural conservation efforts implemented to reduce nutrient inputs and transport and increase nutrient retention in the landscape. To evaluate the relative importance of changes in the sources, transport, and sinks of fertilizer-derived...
Oil-particle interactions and submergence from crude oil spills in marine and freshwater environments: review of the science and future research needs
Faith A. Fitzpatrick, Michael C. Boufadel, Rex Johnson, Kenneth W. Lee, Thomas P. Graan, Adriana C. Bejarano, Zhenduo Zhu, David Waterman, Daniel M. Capone, Earl Hayter, Stephen K. Hamilton, Timothy Dekker, Marcelo H. Garcia, Jacob S. Hassan
2015, Open-File Report 2015-1076
Oil-particle interactions and oil submergence are of much interest to oil spill responders and scientists, especially as transportation of light and heavy crude oils increases in North America’s coastal marine and freshwater environments. This report contains an up-to-date review of the state of the science for oil-particle aggregates (OPAs), in...
Control of nitrogen and phosphorus transport by reservoirs in agricultural landscapes
Stephen M. Powers, Jennifer L. Tank, Dale M. Robertson
2015, Biogeochemistry (124) 417-439
Reservoirs often receive excess nitrogen (N) and phosphorus (P) lost from agricultural land, and may subsequently influence N and P delivery to inland and coastal waters through internal processes such as nutrient burial, denitrification, and nutrient turnover. Currently there is a need to better understand how reservoirs affect nutrient transport...
Tools for discovering and accessing Great Lakes scientific data
Jessica M. Lucido, Jennifer L. Bruce
2015, Fact Sheet 2015-3040
The Great Lakes Restoration Initiative (GLRI) is a multidisciplinary and interagency effort focused on the protection and restoration of the Great Lakes (GL) using the best available science and applying lessons learned from previous studies. The U.S. Geological Survey (USGS) contributes to the GLRI effort by providing resource managers with...
Understanding the Day Cent model: Calibration, sensitivity, and identifiability through inverse modeling
Magdalena Necpálová, Robert P. Anex, Michael N. Fienen, Stephen J. Del Grosso, Michael J. Castellano, John E. Sawyer, Javed Iqbal, Jose L. Pantoja, Daniel W. Barker
2015, Environmental Modelling and Software (66) 110-130
The ability of biogeochemical ecosystem models to represent agro-ecosystems depends on their correct integration with field observations. We report simultaneous calibration of 67 DayCent model parameters using multiple observation types through inverse modeling using the PEST parameter estimation software. Parameter estimation reduced the total sum of weighted squared residuals by...
Simulating the effect of climate change on stream temperature in the Trout Lake Watershed, Wisconsin
William R. Selbig
2015, Science of the Total Environment (511-522) 11-18
The potential for increases in stream temperature across many spatial and temporal scales as a result of climate change can pose a difficult challenge for environmental managers, especially when addressing thermal requirements for sensitive aquatic species. This study evaluates simulated changes to the thermal regime of three northern Wisconsin streams...