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A hydrodynamic model–based approach to assess sampling approaches for dissolved oxygen criteria in the Chesapeake Bay.
- Published in:
- Environmental Monitoring & Assessment, 2023, v. 195, n. 1, p. 1, doi. 10.1007/s10661-022-10725-1
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- Article
Decadal Changes in Water Quality and Net Productivity of a Shallow Danish Estuary Following Significant Nutrient Reductions.
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- Estuaries & Coasts, 2017, v. 40, n. 1, p. 63, doi. 10.1007/s12237-016-0117-x
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- Article
Progress and Challenges in Coupled Hydrodynamic-Ecological Estuarine Modeling.
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- Estuaries & Coasts, 2016, v. 39, n. 2, p. 311, doi. 10.1007/s12237-015-0011-y
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- Article
Spatial and Temporal Patterns of Winter-Spring Oxygen Depletion in Chesapeake Bay Bottom Water.
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- Estuaries & Coasts, 2014, v. 37, n. 6, p. 1432, doi. 10.1007/s12237-014-9775-8
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- Article
Long-Term Changes in Water Quality and Productivity in the Patuxent River Estuary: 1985 to 2003.
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- Estuaries & Coasts, 2008, v. 31, n. 6, p. 1021, doi. 10.1007/s12237-008-9095-y
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- Article
Challenges associated with modeling low-oxygen waters in Chesapeake Bay: a multiple model comparison.
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- Biogeosciences, 2016, v. 13, n. 7, p. 2011, doi. 10.5194/bg-13-2011-2016
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- Article
The metabolism of aquatic ecosystems: history, applications, and future challenges.
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- Aquatic Sciences, 2012, v. 74, n. 1, p. 15, doi. 10.1007/s00027-011-0199-2
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- Article
Redox reactions and weak buffering capacity lead to acidification in the Chesapeake Bay.
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- Nature Communications, 2017, v. 8, n. 1, p. 1, doi. 10.1038/s41467-017-00417-7
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- Article
Submersed Aquatic Vegetation in Chesapeake Bay: Sentinel Species in a Changing World.
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- BioScience, 2017, v. 67, n. 8, p. 698, doi. 10.1093/biosci/bix058
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- Article
Ecological Forecasting and the Science of Hypoxia in Chesapeake Bay.
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- BioScience, 2017, v. 67, n. 7, p. 614, doi. 10.1093/biosci/bix048
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- Article
Ecosystem Metabolism and Carbon Balance in Chesapeake Bay: A 30‐Year Analysis Using a Coupled Hydrodynamic‐Biogeochemical Model.
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- Journal of Geophysical Research. Oceans, 2019, v. 124, n. 8, p. 6141, doi. 10.1029/2019JC015296
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- Article
Modeling the influence of deep water application of dispersants on the surface expression of oil: A sensitivity study.
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- Journal of Geophysical Research. Oceans, 2016, v. 121, n. 8, p. 5995, doi. 10.1002/2015JC011571
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- Article
Development of a submerged aquatic vegetation growth model in the Coupled Ocean–Atmosphere–Wave–Sediment Transport (COAWST v3.4) model.
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- Geoscientific Model Development, 2020, v. 13, n. 11, p. 5211, doi. 10.5194/gmd-13-5211-2020
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- Article
Spatiotemporal variability of light attenuation and net ecosystem metabolism in a back-barrier estuary.
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- Ocean Science Discussions, 2019, p. 1, doi. 10.5194/os-2019-106
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- Article
Spatiotemporal variability of light attenuation and net ecosystem metabolism in a back-barrier estuary.
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- Ocean Science, 2020, v. 16, n. 3, p. 593, doi. 10.5194/os-16-593-2020
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- Article
Chesapeake Bay acidification buffered by spatially decoupled carbonate mineral cycling.
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- Nature Geoscience, 2020, v. 13, n. 6, p. 441, doi. 10.1038/s41561-020-0584-3
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- Article
Interactions of warming and altered nutrient load timing on the phenology of oxygen dynamics in Chesapeake Bay.
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- Journal of the American Water Resources Association, 2023, v. 59, n. 2, p. 429, doi. 10.1111/1752-1688.13101
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- Article
Modeling Impacts of Nutrient Loading, Warming, and Boundary Exchanges on Hypoxia and Metabolism in a Shallow Estuarine Ecosystem.
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- Journal of the American Water Resources Association, 2022, v. 58, n. 6, p. 876, doi. 10.1111/1752-1688.12912
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- Article
Investigating Aquatic Dead Zones.
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- Science Teacher, 2010, v. 77, n. 2, p. 29
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- Article
Challenges and Directions for the Advancement of Estuarine Ecosystem Science.
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- Ecosystems, 2017, v. 20, n. 1, p. 14, doi. 10.1007/s10021-016-0004-0
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- Article
Advancing estuarine ecological forecasts: seasonal hypoxia in Chesapeake Bay.
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- Ecological Applications, 2021, v. 31, n. 6, p. 1, doi. 10.1002/eap.2384
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- Article
Development of a Submerged Aquatic Vegetation Growth Model in a Coupled Wave-Current-Sediment-Transport Modeling System (COAWST v3.4).
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- Geoscientific Model Development Discussions, 2019, p. 1, doi. 10.5194/gmd-2018-271
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- Article
Satellite observations estimating the effects of river discharge and wind‐driven upwelling on phytoplankton dynamics in the Chesapeake Bay.
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- Integrated Environmental Assessment & Management, 2022, v. 18, n. 4, p. 921, doi. 10.1002/ieam.4597
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- Publication type:
- Article
Spatiotemporal variability of light attenuation and net ecosystem metabolism in a back-barrier estuary.
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- Biogeosciences Discussions, 2018, p. 1, doi. 10.5194/bg-2018-335
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- Publication type:
- Article
Understanding Anthropogenic Impacts on pH and Aragonite Saturation State in Chesapeake Bay: Insights From a 30‐Year Model Study.
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- Journal of Geophysical Research. Biogeosciences, 2020, v. 125, n. 7, p. 1, doi. 10.1029/2019JG005620
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- Article
Controls on Carbonate System Dynamics in a Coastal Plain Estuary: A Modeling Study.
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- Journal of Geophysical Research. Biogeosciences, 2019, v. 124, n. 1, p. 61, doi. 10.1029/2018JG004802
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- Article
What drives interannual variability of hypoxia in Chesapeake Bay: Climate forcing versus nutrient loading?
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- Geophysical Research Letters, 2016, v. 43, n. 5, p. 2127, doi. 10.1002/2015GL067334
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- Article
Copepod habitat suitability estimates vary among oxygen metrics in Chesapeake Bay.
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- ICES Journal of Marine Science / Journal du Conseil, 2022, v. 79, n. 3, p. 855, doi. 10.1093/icesjms/fsac019
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- Article
Assessing drivers of estuarine pH: A comparative analysis of the continental U.S.A.'s two largest estuaries.
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- Limnology & Oceanography, 2023, v. 68, n. 10, p. 2227, doi. 10.1002/lno.12418
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- Article
Biogeochemical states, rates, and exchanges exhibit linear responses to large nutrient load reductions in a shallow, eutrophic urban estuary.
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- Limnology & Oceanography, 2022, v. 67, n. 4, p. 739, doi. 10.1002/lno.12037
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- Article
Supply‐controlled calcium carbonate dissolution decouples the seasonal dissolved oxygen and pH minima in Chesapeake Bay.
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- Limnology & Oceanography, 2021, v. 66, n. 10, p. 3796, doi. 10.1002/lno.11919
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- Article
Seasonal and spatial variability in surface pCO<sub>2</sub> and air–water CO<sub>2</sub> flux in the Chesapeake Bay.
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- Limnology & Oceanography, 2020, v. 65, n. 12, p. 3046, doi. 10.1002/lno.11573
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- Article
Source partitioning of oxygen‐consuming organic matter in the hypoxic zone of the Chesapeake Bay.
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- Limnology & Oceanography, 2020, v. 65, n. 8, p. 1801, doi. 10.1002/lno.11419
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- Article
Season‐specific trends and linkages of nitrogen and oxygen cycles in Chesapeake Bay.
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- Limnology & Oceanography, 2018, v. 63, n. 5, p. 2045, doi. 10.1002/lno.10823
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- Article
Hypoxia-induced shifts in nitrogen and phosphorus cycling in Chesapeake Bay.
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- Limnology & Oceanography, 2012, v. 57, n. 3, p. 13, doi. 10.4319/lo.2012.57.3.0835
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- Article
A data‐driven approach to detecting change points in linear regression models.
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- Environmetrics, 2020, v. 31, n. 1, p. N.PAG, doi. 10.1002/env.2591
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- Article
Physical and Biological Controls on Short-Term Variations in Dissolved Oxygen in Shallow Waters of a Large Temperate Estuary.
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- Estuaries & Coasts, 2024, v. 47, n. 6, p. 1456, doi. 10.1007/s12237-024-01372-5
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- Article
Long-term Annual Aerial Surveys of Submersed Aquatic Vegetation (SAV) Support Science, Management, and Restoration.
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- Estuaries & Coasts, 2022, v. 45, n. 4, p. 1012, doi. 10.1007/s12237-019-00651-w
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- Article
Influences of a River Dam on Delivery and Fate of Sediments and Particulate Nutrients to the Adjacent Estuary: Case Study of Conowingo Dam and Chesapeake Bay.
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- Estuaries & Coasts, 2019, v. 42, n. 8, p. 2072, doi. 10.1007/s12237-019-00634-x
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- Article
Patterns and Trends in Secchi Disk Depth over Three Decades in the Chesapeake Bay Estuarine Complex.
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- Estuaries & Coasts, 2019, v. 42, n. 4, p. 927, doi. 10.1007/s12237-019-00547-9
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- Article